uvex_transients.transients.LFBOTs.LuminousFastBlueOpticalTransient.sample_events_on_healpix_grid#
- LuminousFastBlueOpticalTransient.sample_events_on_healpix_grid(nside: int, *, t_start: Time, t_end: Time | None = None, duration: Quantity | None = None, pixel_mask: NDArray[bool] | None = None, pixel_ids: NDArray[int64] | None = None, order: str = 'nested', jitter: bool = True, seed: SeedSequence | int | None = None) QTable#
Draw a Monte Carlo realization of events on a HEALPix grid, over a time window.
Each sampled event is placed uniformly at random within one of the selected HEALPix pixels (optionally jittered to a sub-pixel position; see jitter), assigned a redshift drawn from sample_event_redshift, an explosion time drawn uniformly across
[t_start, t_start + duration), and a per-event parameter seed (see spawn_seeds) rather than fully-sampled physical parameters – those are meant to be regenerated lazily, on demand, from that seed (via SpectralModel.sample_parameters).- Parameters:
nside (
int) – HEALPix resolution parameter of the sampling grid.t_start (
Time) – Start of the sampling window.t_end (
Time, optional) – End of the sampling window. Mutually exclusive with duration; see _resolve_duration.duration (
Quantity, optional) – Length of the sampling window. Mutually exclusive with t_end; see _resolve_duration.pixel_mask (
numpy.ndarrayofbool, optional) – Boolean mask, shape(ah.nside_to_npix(nside),), selecting which pixels to sample events in. Mutually exclusive with pixel_ids. If neither is given, every pixel in the grid is eligible.pixel_ids (
numpy.ndarrayofint, optional) – Explicit pixel indices to sample events in. Mutually exclusive with pixel_mask.order (
str, optional) – HEALPix pixel ordering scheme ("nested"or"ring"), consistent with whatever ordering pixel_mask/pixel_ids were defined against. The default is"nested".jitter (
bool, optional) – If True (the default), place each event at a random sub-pixel position. If False, place every event at its pixel’s center.seed (
numpy.random.SeedSequence,int, orNone, optional) – Root seed for reproducibility. A single tree of children is spawned from this seed for every stochastic draw in this call – including the event count itself – so that no two draws (however many events end up being sampled) ever share a stream.
- Returns:
Event table with one row per sampled event; see _create_event_table_buffer for its columns. Empty (but still correctly typed) if zero events were sampled.
- Return type: