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FA-56136 / Astronomical coordinate conventions / Open access

Fabry perot spectral order: Fabry-Perot dispersion changes interference order with scan channel · case 01

The adapter reports an incorrect channel dispersion while other fields remain valid.

Verified by executionVariant 1 · 6 checks per implementationDownload source bundle ↓JSON ↗

ROOT CAUSE

Fabry-Perot dispersion changes interference order with scan channel. Faulty expression: 2*d['d']/d['m']

VERIFIED REPAIR

Preserve the declared model convention at this site: 2*d['d']*d['q']/d['m']

Unsuccessful approach: A partial convention repair still uses 2*d['d']*d['q']/(d['m']+d['k'])

Case contract

A reduced Fabry-Perot scan supplies optical thickness T, integer interference order m>0, cosine q of incidence angle, channel thickness step d, channel k, and separate calibration line wavelength line. Wavelength is 2*(T+k*d)*q/m. Interference order is a coordinate label, not the channel index. Output fields are defined by: wavelength = 2*(d['T']+d['k']*d['d'])*d['q']/d['m']; channel_dispersion = 2*d['d']*d['q']/d['m']; adjacent_order_wavelength = 2*d['T']*d['q']/(d['m']+1); free_spectral_interval = 2*d['T']*d['q']/d['m']-2*d['T']*d['q']/(d['m']+1); normal_incidence = 2*d['T']/d['m']; thickness_from_line = d['line']*d['m']/(2*d['q'])

Why this case matters

Catalog, detector, sky-coordinate, and spectroscopy adapters must preserve the association between numeric coordinates and their declared reference conventions.

1 / The failure

Exit 1
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(d):
    return {'wavelength': 2*(d['T']+d['k']*d['d'])*d['q']/d['m'], 'channel_dispersion': 2*d['d']/d['m'], 'adjacent_order_wavelength': 2*d['T']*d['q']/(d['m']+1), 'free_spectral_interval': 2*d['T']*d['q']/d['m']-2*d['T']*d['q']/(d['m']+1), 'normal_incidence': 2*d['T']/d['m'], 'thickness_from_line': d['line']*d['m']/(2*d['q'])}
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = {1: [({'T': 120, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 31.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 63.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.0, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0}), ({'T': 120, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 28.5, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 126.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 60.0, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0}), ({'T': 120, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.0, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0})], 2: [({'T': 121, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 31.75, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 63.5, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.4, 'free_spectral_interval': 12.100000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 60.0}), ({'T': 121, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.25, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 28.75, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 127.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 60.5, 'free_spectral_interval': 60.5, 'normal_incidence': 242.0, 'thickness_from_line': 30.0}), ({'T': 121, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.125, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.1, 'free_spectral_interval': 3.0250000000000004, 'normal_incidence': 60.5, 'thickness_from_line': 240.0})], 3: [({'T': 122, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 64.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.8, 'free_spectral_interval': 12.200000000000003, 'normal_incidence': 61.0, 'thickness_from_line': 60.0}), ({'T': 122, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.0, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 128.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 61.0, 'free_spectral_interval': 61.0, 'normal_incidence': 244.0, 'thickness_from_line': 30.0}), ({'T': 122, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.25, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.2, 'free_spectral_interval': 3.0500000000000007, 'normal_incidence': 61.0, 'thickness_from_line': 240.0})], 4: [({'T': 123, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.25, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 64.5, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 49.2, 'free_spectral_interval': 12.299999999999997, 'normal_incidence': 61.5, 'thickness_from_line': 60.0}), ({'T': 123, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.75, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.25, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 129.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 61.5, 'free_spectral_interval': 61.5, 'normal_incidence': 246.0, 'thickness_from_line': 30.0}), ({'T': 123, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.375, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.3, 'free_spectral_interval': 3.0749999999999993, 'normal_incidence': 61.5, 'thickness_from_line': 240.0})], 5: [({'T': 124, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 65.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 49.6, 'free_spectral_interval': 12.399999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 60.0}), ({'T': 124, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 31.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.5, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 130.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 62.0, 'free_spectral_interval': 62.0, 'normal_incidence': 248.0, 'thickness_from_line': 30.0}), ({'T': 124, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.5, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.4, 'free_spectral_interval': 3.0999999999999996, 'normal_incidence': 62.0, 'thickness_from_line': 240.0})]}
for i, (record, expected) in enumerate(fixtures[N]):
    check('astronomical fixture %s' % i, solve(record), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
Boundary fixtureActualExpectedOutcome
astronomical fixture 0{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 1.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 31.5}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 31.5}Failed
astronomical fixture 1{'adjacent_order_wavelength': 48.0, 'channel_dispersion': 1.0, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0, 'wavelength': 63.0}{'adjacent_order_wavelength': 48.0, 'channel_dispersion': 1.0, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0, 'wavelength': 63.0}Passed
astronomical fixture 2{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 1.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 30.0}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 30.0}Failed
astronomical fixture 3{'adjacent_order_wavelength': 24.0, 'channel_dispersion': -1.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 28.5}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': -0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 28.5}Failed
astronomical fixture 4{'adjacent_order_wavelength': 60.0, 'channel_dispersion': 4.0, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0, 'wavelength': 126.0}{'adjacent_order_wavelength': 60.0, 'channel_dispersion': 2.0, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0, 'wavelength': 126.0}Failed
astronomical fixture 5{'adjacent_order_wavelength': 12.0, 'channel_dispersion': 0.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0, 'wavelength': 15.0}{'adjacent_order_wavelength': 12.0, 'channel_dispersion': 0.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0, 'wavelength': 15.0}Passed

SHA-256 / ca2245a415b2ea43389c88911a34a7b63bfaf92f76e5f91a30afd1d5bfc2ef8b

2 / The unsuccessful fix

Exit 1
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(d):
    return {'wavelength': 2*(d['T']+d['k']*d['d'])*d['q']/d['m'], 'channel_dispersion': 2*d['d']*d['q']/(d['m']+d['k']), 'adjacent_order_wavelength': 2*d['T']*d['q']/(d['m']+1), 'free_spectral_interval': 2*d['T']*d['q']/d['m']-2*d['T']*d['q']/(d['m']+1), 'normal_incidence': 2*d['T']/d['m'], 'thickness_from_line': d['line']*d['m']/(2*d['q'])}
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = {1: [({'T': 120, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 31.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 63.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.0, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0}), ({'T': 120, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 28.5, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 126.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 60.0, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0}), ({'T': 120, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.0, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0})], 2: [({'T': 121, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 31.75, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 63.5, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.4, 'free_spectral_interval': 12.100000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 60.0}), ({'T': 121, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.25, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 28.75, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 127.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 60.5, 'free_spectral_interval': 60.5, 'normal_incidence': 242.0, 'thickness_from_line': 30.0}), ({'T': 121, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.125, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.1, 'free_spectral_interval': 3.0250000000000004, 'normal_incidence': 60.5, 'thickness_from_line': 240.0})], 3: [({'T': 122, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 64.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.8, 'free_spectral_interval': 12.200000000000003, 'normal_incidence': 61.0, 'thickness_from_line': 60.0}), ({'T': 122, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.0, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 128.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 61.0, 'free_spectral_interval': 61.0, 'normal_incidence': 244.0, 'thickness_from_line': 30.0}), ({'T': 122, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.25, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.2, 'free_spectral_interval': 3.0500000000000007, 'normal_incidence': 61.0, 'thickness_from_line': 240.0})], 4: [({'T': 123, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.25, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 64.5, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 49.2, 'free_spectral_interval': 12.299999999999997, 'normal_incidence': 61.5, 'thickness_from_line': 60.0}), ({'T': 123, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.75, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.25, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 129.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 61.5, 'free_spectral_interval': 61.5, 'normal_incidence': 246.0, 'thickness_from_line': 30.0}), ({'T': 123, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.375, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.3, 'free_spectral_interval': 3.0749999999999993, 'normal_incidence': 61.5, 'thickness_from_line': 240.0})], 5: [({'T': 124, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 65.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 49.6, 'free_spectral_interval': 12.399999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 60.0}), ({'T': 124, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 31.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.5, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 130.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 62.0, 'free_spectral_interval': 62.0, 'normal_incidence': 248.0, 'thickness_from_line': 30.0}), ({'T': 124, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.5, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.4, 'free_spectral_interval': 3.0999999999999996, 'normal_incidence': 62.0, 'thickness_from_line': 240.0})]}
for i, (record, expected) in enumerate(fixtures[N]):
    check('astronomical fixture %s' % i, solve(record), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
Boundary fixtureActualExpectedOutcome
astronomical fixture 0{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.2857142857142857, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 31.5}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 31.5}Failed
astronomical fixture 1{'adjacent_order_wavelength': 48.0, 'channel_dispersion': 0.5714285714285714, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0, 'wavelength': 63.0}{'adjacent_order_wavelength': 48.0, 'channel_dispersion': 1.0, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0, 'wavelength': 63.0}Failed
astronomical fixture 2{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 30.0}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 30.0}Passed
astronomical fixture 3{'adjacent_order_wavelength': 24.0, 'channel_dispersion': -0.2857142857142857, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 28.5}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': -0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 28.5}Failed
astronomical fixture 4{'adjacent_order_wavelength': 60.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0, 'wavelength': 126.0}{'adjacent_order_wavelength': 60.0, 'channel_dispersion': 2.0, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0, 'wavelength': 126.0}Failed
astronomical fixture 5{'adjacent_order_wavelength': 12.0, 'channel_dispersion': 0.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0, 'wavelength': 15.0}{'adjacent_order_wavelength': 12.0, 'channel_dispersion': 0.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0, 'wavelength': 15.0}Passed

SHA-256 / b8d5a876ba6b635cbb37c2e1c7f329a43125b120145c26d859a666c714fdd28a

3 / The verified repair

Exit 0
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(d):
    return {'wavelength': 2*(d['T']+d['k']*d['d'])*d['q']/d['m'], 'channel_dispersion': 2*d['d']*d['q']/d['m'], 'adjacent_order_wavelength': 2*d['T']*d['q']/(d['m']+1), 'free_spectral_interval': 2*d['T']*d['q']/d['m']-2*d['T']*d['q']/(d['m']+1), 'normal_incidence': 2*d['T']/d['m'], 'thickness_from_line': d['line']*d['m']/(2*d['q'])}
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = {1: [({'T': 120, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 31.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 63.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.0, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0}), ({'T': 120, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 28.5, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.0, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0}), ({'T': 120, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 126.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 60.0, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0}), ({'T': 120, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.0, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0})], 2: [({'T': 121, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 31.75, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 63.5, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.4, 'free_spectral_interval': 12.100000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 60.0}), ({'T': 121, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.25, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 28.75, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.2, 'free_spectral_interval': 6.050000000000001, 'normal_incidence': 60.5, 'thickness_from_line': 120.0}), ({'T': 121, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 127.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 60.5, 'free_spectral_interval': 60.5, 'normal_incidence': 242.0, 'thickness_from_line': 30.0}), ({'T': 121, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.125, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.1, 'free_spectral_interval': 3.0250000000000004, 'normal_incidence': 60.5, 'thickness_from_line': 240.0})], 3: [({'T': 122, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 64.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 48.8, 'free_spectral_interval': 12.200000000000003, 'normal_incidence': 61.0, 'thickness_from_line': 60.0}), ({'T': 122, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.0, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.4, 'free_spectral_interval': 6.100000000000001, 'normal_incidence': 61.0, 'thickness_from_line': 120.0}), ({'T': 122, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 128.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 61.0, 'free_spectral_interval': 61.0, 'normal_incidence': 244.0, 'thickness_from_line': 30.0}), ({'T': 122, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.25, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.2, 'free_spectral_interval': 3.0500000000000007, 'normal_incidence': 61.0, 'thickness_from_line': 240.0})], 4: [({'T': 123, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.25, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 64.5, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 49.2, 'free_spectral_interval': 12.299999999999997, 'normal_incidence': 61.5, 'thickness_from_line': 60.0}), ({'T': 123, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 30.75, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.25, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.6, 'free_spectral_interval': 6.149999999999999, 'normal_incidence': 61.5, 'thickness_from_line': 120.0}), ({'T': 123, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 129.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 61.5, 'free_spectral_interval': 61.5, 'normal_incidence': 246.0, 'thickness_from_line': 30.0}), ({'T': 123, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.375, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.3, 'free_spectral_interval': 3.0749999999999993, 'normal_incidence': 61.5, 'thickness_from_line': 240.0})], 5: [({'T': 124, 'm': 4, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 32.5, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 4, 'q': 1, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 65.0, 'channel_dispersion': 1.0, 'adjacent_order_wavelength': 49.6, 'free_spectral_interval': 12.399999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 60.0}), ({'T': 124, 'm': 4, 'q': 0.5, 'd': 2, 'k': 0, 'line': 30}, {'wavelength': 31.0, 'channel_dispersion': 0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 4, 'q': 0.5, 'd': -2, 'k': 3, 'line': 30}, {'wavelength': 29.5, 'channel_dispersion': -0.5, 'adjacent_order_wavelength': 24.8, 'free_spectral_interval': 6.199999999999999, 'normal_incidence': 62.0, 'thickness_from_line': 120.0}), ({'T': 124, 'm': 1, 'q': 0.5, 'd': 2, 'k': 3, 'line': 30}, {'wavelength': 130.0, 'channel_dispersion': 2.0, 'adjacent_order_wavelength': 62.0, 'free_spectral_interval': 62.0, 'normal_incidence': 248.0, 'thickness_from_line': 30.0}), ({'T': 124, 'm': 4, 'q': 0.25, 'd': 0, 'k': 3, 'line': 30}, {'wavelength': 15.5, 'channel_dispersion': 0.0, 'adjacent_order_wavelength': 12.4, 'free_spectral_interval': 3.0999999999999996, 'normal_incidence': 62.0, 'thickness_from_line': 240.0})]}
for i, (record, expected) in enumerate(fixtures[N]):
    check('astronomical fixture %s' % i, solve(record), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
Boundary fixtureActualExpectedOutcome
astronomical fixture 0{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 31.5}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 31.5}Passed
astronomical fixture 1{'adjacent_order_wavelength': 48.0, 'channel_dispersion': 1.0, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0, 'wavelength': 63.0}{'adjacent_order_wavelength': 48.0, 'channel_dispersion': 1.0, 'free_spectral_interval': 12.0, 'normal_incidence': 60.0, 'thickness_from_line': 60.0, 'wavelength': 63.0}Passed
astronomical fixture 2{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 30.0}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': 0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 30.0}Passed
astronomical fixture 3{'adjacent_order_wavelength': 24.0, 'channel_dispersion': -0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 28.5}{'adjacent_order_wavelength': 24.0, 'channel_dispersion': -0.5, 'free_spectral_interval': 6.0, 'normal_incidence': 60.0, 'thickness_from_line': 120.0, 'wavelength': 28.5}Passed
astronomical fixture 4{'adjacent_order_wavelength': 60.0, 'channel_dispersion': 2.0, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0, 'wavelength': 126.0}{'adjacent_order_wavelength': 60.0, 'channel_dispersion': 2.0, 'free_spectral_interval': 60.0, 'normal_incidence': 240.0, 'thickness_from_line': 30.0, 'wavelength': 126.0}Passed
astronomical fixture 5{'adjacent_order_wavelength': 12.0, 'channel_dispersion': 0.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0, 'wavelength': 15.0}{'adjacent_order_wavelength': 12.0, 'channel_dispersion': 0.0, 'free_spectral_interval': 3.0, 'normal_incidence': 60.0, 'thickness_from_line': 240.0, 'wavelength': 15.0}Passed

SHA-256 / e677511fdb5620e6beb9c23e16a22b54bad7d12cf40fbd5c16b6ce9a1c0998f6

Verification & scope

Explicitly stipulated finite algebraic adapter; no standards conformance, physical accuracy, or production-library claim. Inputs are the documented finite valid model domain. This reproducer isolates one failure mechanism. Results cover the supplied fixtures. Variants within a family share a test contract and should remain grouped when constructing evaluation splits. Related mechanisms with a shared evaluation_group must also remain together; these controlled models are not independent production incidents.

Observations recorded using Python 3.12.14 at 2026-09-29T14:46:04.329490+00:00.

Case digest / eaf0ec79ba596bd5e73ac4bbb3537879b26316e6af0d0ea2ff46981a7c22e44f