학술논문

Investigating the sources of low-energy events in a SuperCDMS-HVeV detector
Document Type
Working Paper
Author
SuperCDMS CollaborationAlbakry, M. F.Alkhatib, I.Amaral, D. W. P.Aralis, T.Aramaki, T.Arnquist, I. J.Langroudy, I. AtaeeAzadbakht, E.Banik, S.Bathurst, C.Bauer, D. A.Bhattacharyya, R.Brink, P. L.Bunker, R.Cabrera, B.Calkins, R.Cameron, R. A.Cartaro, C.Cerdeño, D. G.Chang, Y. -Y.Chaudhuri, M.Chen, R.Chott, N.Cooley, J.Coombes, H.Corbett, J.Cushman, P.De Brienne, F.Dharani, S.di Vacri, M. L.Diamond, M. D.Fascione, E.Figueroa-Feliciano, E.Fink, C. W.Fouts, K.Fritts, M.Gerbier, G.Germond, R.Ghaith, M.Golwala, S. R.Hall, J.Hassan, N.Hines, B. A.Hollister, M. I.Hong, Z.Hoppe, E. W.Hsu, L.Huber, M. E.Iyer, V.Jastram, A.Kashyap, V. K. S.Kelsey, M. H.Kubik, A.Kurinsky, N. A.Lawrence, R. E.Lee, M.Li, A.Liu, J.Liu, Y.Loer, B.Asamar, E. LopezLukens, P.MacFarlane, D. B.Mahapatra, R.Mandic, V.Mast, N.Mayer, A. J.Theenhausen, H. Meyer zuMichaud, É.Michielin, E.Mirabolfathi, N.Mohanty, B.Nagorny, S.Nelson, J.Neog, H.Novati, V.Orrell, J. L.Osborne, M. D.Oser, S. M.Page, W. A.Partridge, R.Pedreros, D. S.Podviianiuk, R.Ponce, F.Poudel, S.Pradeep, A.Pyle, M.Rau, W.Reid, E.Ren, R.Reynolds, T.Roberts, A.Robinson, A. E.Saab, T.Sadoulet, B.Saikia, I.Sander, J.Sattari, A.Schmidt, B.Schnee, R. W.Scorza, S.Serfass, B.Poudel, S. S.Sincavage, D. J.Stanford, C.Street, J.Sun, H.Thasrawala, F. K.Toback, D.Underwood, R.Verma, S.Villano, A. N.von Krosigk, B.Watkins, S. L.Wen, O.Williams, Z.Wilson, M. J.Winchell, J.Wykoff, K.Yellin, S.Young, B. A.Yu, T. C.Zatschler, B.Zatschler, S.Zaytsev, A.Zhang, E.Zheng, L.Zuber, S.
Source
Subject
High Energy Physics - Experiment
Astrophysics - Cosmology and Nongalactic Astrophysics
Physics - Instrumentation and Detectors
Language
Abstract
Recent experiments searching for sub-GeV/$c^2$ dark matter have observed event excesses close to their respective energy thresholds. Although specific to the individual technologies, the measured excess event rates have been consistently reported at or below event energies of a few-hundred eV, or with charges of a few electron-hole pairs. In the present work, we operated a 1-gram silicon SuperCDMS-HVeV detector at three voltages across the crystal (0 V, 60 V and 100 V). The 0 V data show an excess of events in the tens of eV region. Despite this event excess, we demonstrate the ability to set a competitive exclusion limit on the spin-independent dark matter--nucleon elastic scattering cross section for dark matter masses of $\mathcal{O}(100)$ MeV/$c^2$, enabled by operation of the detector at 0 V potential and achievement of a very low $\mathcal{O}(10)$ eV threshold for nuclear recoils. Comparing the data acquired at 0 V, 60 V and 100 V potentials across the crystal, we investigated possible sources of the unexpected events observed at low energy. The data indicate that the dominant contribution to the excess is consistent with a hypothesized luminescence from the printed circuit boards used in the detector holder.