VWDB Višnjan–Washington Sky Survey
Stand-in data
STAND-IN DATA. This catalog contains 2,279 ZTF detections and 1,000,000 synthetic fixture rows — NOT Visnjan-Washington observations. Stand-in data is loaded while the VW Data Analysis Pipeline is built. Do not use these measurements for science.

Statistics

The survey's observing record, computed from survey.exposures. These are ZTF's observing statistics, not Visnjan-Washington's — the stand-in notice above applies to every plot here as much as it does to a search result, and the synthetic fixture is excluded by default because its cadence is invented (a perfectly uniform one exposure every 0.01 day), not observed.

Clump by day week month Dates all 2018 2019 2020 2021 2022 2023 2024 2025 Band zg zi zr Synthetic fixture excluded
Exposures
237
in 3 bands (zg, zi, zr)
Nights observed
80
3.0 exposures per night
Baseline
337 d
Jan 21, 2022 – Dec 24, 2022
Open-shutter time
2.0 h
summed exposure time
Median depth
20.94 mag
limiting magnitude per exposure
Median airmass
1.15
secant of the zenith angle

Exposures per week

How often the survey observed. A gap is a week it didn't run, not one with nothing to see. Hover a column for its date, its total and how that total divides between bands. Zoomed to Jan 1, 2022 – Dec 31, 2022; the from and to in the address take any date, not just the whole years the chips offer.

Jan 17, 2022Apr 11, 2022Jul 4, 2022Sep 26, 2022Dec 19, 2022250Week of Jan 17, 2022 — 2 exposures (zg 1, zr 1)Week of Feb 7, 2022 — 8 exposures (zg 2, zr 6)Week of Feb 14, 2022 — 4 exposures (zi 1, zr 3)Week of Feb 21, 2022 — 7 exposures (zg 4, zi 1, zr 2)Week of Feb 28, 2022 — 13 exposures (zg 6, zi 1, zr 6)Week of Mar 28, 2022 — 6 exposures (zg 3, zi 1, zr 2)Week of Apr 4, 2022 — 20 exposures (zg 9, zi 2, zr 9)Week of Apr 11, 2022 — 3 exposures (zi 2, zr 1)Week of Apr 18, 2022 — 11 exposures (zg 6, zi 1, zr 4)Week of Apr 25, 2022 — 25 exposures (zg 10, zi 2, zr 13)Week of May 2, 2022 — 14 exposures (zg 5, zr 9)Week of May 9, 2022 — 7 exposures (zr)Week of May 16, 2022 — 13 exposures (zg 2, zr 11)Week of May 23, 2022 — 25 exposures (zg 11, zi 2, zr 12)Week of May 30, 2022 — 19 exposures (zg 7, zi 1, zr 11)Week of Jun 6, 2022 — 7 exposures (zg 3, zi 1, zr 3)Week of Jun 13, 2022 — 5 exposures (zg 2, zi 1, zr 2)Week of Jun 20, 2022 — 8 exposures (zg 3, zi 2, zr 3)Week of Jun 27, 2022 — 5 exposures (zg 3, zi 2)Week of Oct 24, 2022 — 4 exposures (zr)Week of Oct 31, 2022 — 8 exposures (zr)Week of Nov 7, 2022 — 7 exposures (zr)Week of Nov 28, 2022 — 2 exposures (zg 1, zr 1)Week of Dec 5, 2022 — 2 exposures (zr)Week of Dec 12, 2022 — 2 exposures (zg 1, zr 1)Week of Dec 19, 2022 — 10 exposures (zg 3, zi 2, zr 5)

Cumulative exposures

The same data, accumulated — flat stretches are when the survey was not running, which the bar chart above makes easy to miss among the weeks that did have data. Hover a point for the running total and what it added.

Jan 17, 2022Apr 11, 2022Jul 4, 2022Sep 26, 2022Dec 19, 2022991754Week of Jan 17, 2022 — 2 added, 756 totalWeek of Feb 7, 2022 — 8 added, 764 totalWeek of Feb 14, 2022 — 4 added, 768 totalWeek of Feb 21, 2022 — 7 added, 775 totalWeek of Feb 28, 2022 — 13 added, 788 totalWeek of Mar 28, 2022 — 6 added, 794 totalWeek of Apr 4, 2022 — 20 added, 814 totalWeek of Apr 11, 2022 — 3 added, 817 totalWeek of Apr 18, 2022 — 11 added, 828 totalWeek of Apr 25, 2022 — 25 added, 853 totalWeek of May 2, 2022 — 14 added, 867 totalWeek of May 9, 2022 — 7 added, 874 totalWeek of May 16, 2022 — 13 added, 887 totalWeek of May 23, 2022 — 25 added, 912 totalWeek of May 30, 2022 — 19 added, 931 totalWeek of Jun 6, 2022 — 7 added, 938 totalWeek of Jun 13, 2022 — 5 added, 943 totalWeek of Jun 20, 2022 — 8 added, 951 totalWeek of Jun 27, 2022 — 5 added, 956 totalWeek of Oct 24, 2022 — 4 added, 960 totalWeek of Oct 31, 2022 — 8 added, 968 totalWeek of Nov 7, 2022 — 7 added, 975 totalWeek of Nov 28, 2022 — 2 added, 977 totalWeek of Dec 5, 2022 — 2 added, 979 totalWeek of Dec 12, 2022 — 2 added, 981 totalWeek of Dec 19, 2022 — 10 added, 991 total

Exposures by filter

How the observing above divides between bands — always the whole split, whichever band is currently picked. Click a slice to show only that band in the charts above.

zr — 133 exposures (56% of 237) · Show only zrzg — 82 exposures (35% of 237) · Show only zgzi — 22 exposures (9% of 237) · Show only zi237exposureszr — 133 exposures (56% of 237) · Show only zrzr13356%zg — 82 exposures (35% of 237) · Show only zgzg8235%zi — 22 exposures (9% of 237) · Show only zizi229%

Revisits and light-curve length

How often the survey comes back to the same object, over the same bands and dates as the charts above. Grouped by ZTF's own association of the stand-in data (ztf_oid), which is the only thing linking one detection to another until phase 2 builds objects — so these describe what the stand-in catalog can support, not a VW data product. Only the 2,279 detections ZTF associated this way are counted, out of 1,002,279 sources in the catalog: a source with no association has no object identity here at all, so it is absent from these charts rather than appearing as a one-point curve.

Objects with a curve
20
from 411 linked detections
Typical curve length
5 points
median over those objects
Typical revisit
24 h
median gap between consecutive points
Longest baseline
337 d
first to last point on one object

Time between consecutive detections

The sampling, which is what sets the periods a light curve can recover: a signal shorter than the typical gap is not resolved, and one near a spike in this histogram aliases against it. Log-spaced buckets — revisits run from minutes to years. Hover a row for its share.

under 1 hour — 98 gaps (25%)under 1 hour981–6 hours — 37 gaps (9%)1–6 hours376–24 hours — 64 gaps (16%)6–24 hours641–3 days — 74 gaps (19%)1–3 days743–10 days — 58 gaps (15%)3–10 days5810–30 days — 38 gaps (10%)10–30 days381–3 months — 11 gaps (3%)1–3 months113–12 months — 11 gaps (3%)3–12 months11over a year — 0 gaps (0%)over a year0

Detections per object

How long the curves are. An object with a handful of points has a position and little else — fitting a period or an orbit takes tens of points at least, so it is the bottom rows here that are worth plotting. Plot the best-sampled one (117 points).

1 point — 2 objects (10%) · list them1 point22–4 — 7 objects (35%) · list them2–475–9 — 3 objects (15%) · list them5–9310–24 — 4 objects (20%) · list them10–24425–49 — 1 object (5%) · list it25–49150–99 — 2 objects (10%) · list them50–992100 or more — 1 object (5%) · list it100 or more1

Same data as JSON: /api/statistics?from=2022-01-01&to=2022-12-31