Abstract
We present a catalog of 500 galaxy cluster candidates in the SPT-Deep field: a 100 deg2 field that combines data from the SPT-3G and SPTpol surveys to reach noise levels of 3.0, 2.2, and 9.0 μK-arcmin at 95, 150, and 220 GHz, respectively. Candidates are selected via the thermal Sunyaev–Zel’dovich (SZ) effect with a minimum significance of ξ = 4.0, resulting in a catalog of purity ∼89%. Optical data from the Dark Energy Survey and infrared data from the Spitzer Space Telescope are used to confirm 442 cluster candidates. The clusters span 0.12 < z ≲ 1.8 and 1.0 × 1014M⊙/h70 < M500c < 8.7 × 1014M⊙/h70. The sample’s median redshift is 0.74, and the median mass is 1.7 × 1014M⊙/h70; these are the lowest median mass and highest median redshift of any SZ-selected sample to date. We assess the effect of infrared emission from cluster member galaxies on cluster selection by performing a joint fit to the infrared dust and tSZ signals by combining measurements from SPT and overlapping submillimeter data from Herschel/SPIRE. We find that at high redshift (z > 1), the tSZ signal is reduced by (Formula presented) 17.9−3.2+3.8% ( (Formula presented) 3.8−0.7+0.9% ) at 150 GHz (95 GHz) due to dust contamination. We repeat our cluster finding method on dust-nulled SPT maps and find the resulting catalog is consistent with the nominal SPT-Deep catalog, suggesting dust contamination does not significantly impact the SPT-Deep selection function; we attribute this lack of bias to the inclusion of the SPT 220 GHz band.
| Original language | English |
|---|---|
| Article number | 48 |
| Number of pages | 20 |
| Journal | Astrophysical Journal |
| Volume | 1004 |
| Issue number | 1 |
| Early online date | 4 Jun 2026 |
| DOIs | |
| Publication status | Published - 10 Jun 2026 |
Keywords
- Galaxy clusters (584)
- Large-scale structure of the universe (902)
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