tcspc op• Datenarten: counts → table
• Aufruf: import photoncount; photoncount.tcspc_stats(hist, bin_ps=100.0) (oder opsphoton.get("tcspc_stats"))
Kenngrößen eines Ankunftszeit-Histogramms: Maximum, Schwerpunkt, Breite, Hintergrund.
> Die ausführliche Beschreibung unten ist der Originaltext — Zusammenfassung und Überschriften sind übersetzt.
Returns a dict: `total_counts · peak_bin (int) · peak_counts` ·
`peak_time_ps (the **centre** of the peak bin, (k + 0.5)*bin_ps`) ·
`centroid_ps` (the first moment over the whole histogram, background
included — run :func:tcspc_background_subtract first if that matters) ·
`fwhm_ps` (full width at half maximum *above the background*, by linear
interpolation of the two half-crossings around the peak) ·
`background_per_bin` (the median bin, the same robust estimate
:func:tcspc_background_subtract uses) · `signal_counts`
(`total - background*bins) · sbr` (signal-to-background ratio, or
`None when the background estimate is 0) · n_bins · window_ps`.
`fwhm_ps is None` — never a fabricated number — when the profile does
not cross the half-maximum on both sides of the peak, which is exactly what a
monotone fluorescence decay does (its peak is bin 0). A `None` here means
"this histogram has no width in the FWHM sense", not "the measurement
failed".
Ground truth: for a noiseless Gaussian return of FWHM 500 ps, `centroid_ps`
matches the analytic `2d/c to 1.8e-12 ps. fwhm_ps` comes back as 508.41
at 100 ps bins and 503.07 at 50 ps bins — the linear interpolation between
two bins on either flank systematically overestimates a Gaussian's width,
by 1.7% and 0.6% respectively, and the error shrinks with the bin width.
That bias is a property of the estimator; it is reported here rather than
hidden behind a "500" that only holds in the continuum limit.
Raises `ValueError`: negative, non-finite or non-1-D *hist*, a
non-positive *bin_ps*, and an all-zero histogram (no photon arrived, so
there is no arrival time; the centroid would be `0/0`).
• Leitfaden zur Familie photon_timeresolved
• Katalog der Beispieldaten (Download-URLs / Lizenzen) — 2-D nutzt skimage.data (BSD/Public Domain) plus synthetische Bilder, 3-D nennt Download-URLs echter Datenquellen (Stanford, PDS, …).
• Herkunft und Literatur der Operatoren — die Quellen der Forschung/Verfahren, auf denen diese Operatorfamilie beruht.
• Der kanonische Algorithmus (Autor, Jahr) und seine Anwendungen stehen im Familienleitfaden oben.
• photon_timeresolved — py -3.11 examples/photon_timeresolved.py
table als Eingabe)—
tcspc)tcspc_simulate · tcspc_irf_convolve · tcspc_background_subtract
*Provenance: photoncount.py — PHOTON Operator-Registry. Diese Notiz wird von tools/opdocs.py md erzeugt (nicht von Hand bearbeiten).*
© 2026 Kazufumi Furuse — Fullseye operator documentation. Licensed under Apache-2.0.