论文标题

雪人2021闪烁的气泡室:液体噪声泡泡室,用于暗物质和CE $ν$ ns检测

Snowmass 2021 Scintillating Bubble Chambers: Liquid-noble Bubble Chambers for Dark Matter and CE$ν$NS Detection

论文作者

Alfonso-Pita, E., Baker, M., Behnke, E., Brandon, A., Bressler, M., Broerman, B., Clark, K., Coppejans, R., Corbett, J., Cripe, C., Crisler, M., Dahl, C. E., Dering, K., Croix, A. de St., Durnford, D., Foy, K., Giampa, P., Gresl, J., Hall, J., Harris, O., Hawley-Herrera, H., Jackson, C. M., Khatri, M., Ko, Y., Lamb, N., Laurin, M., Levine, I., Lippincott, W. H., Liu, X., Neilson, R., Pal, S., Phelan, J., Piro, M. -C., Priya, S., Ray, S., Rich, E., Sheng, Z., Sloss, A., Struyk, X., Vázquez-Jáuregui, E., Velasco, D., Westerdale, S., Whitis, T. J., Zha, W., Zhang, R.

论文摘要

闪烁的气泡室(SBC)协作正在开发液体噪声泡沫室,用于用于低质量(GEV-SCALE)暗物质和相干散射的低质量(MEV-Scale)中微子(CE $ NS)的相干散射。该技术的第一个物理规模的演示器是一种10公斤液体氩气泡室,称为SBC-LAR10,现在在费米拉布(Fermilab)进行了委托。该设备将校准后背景歧视能力和过热氩气对低至100 eV的核电臂的灵敏度。为SBC在Snolab的第一次暗物质搜索而建立了第二个具有功能相同的探测器,该检测器正在构建放射线构造。该搜索的预计无旋转敏感性约为$ 10^{ - 43} $ cm $^2 $ in 1 gev $/c^2 $暗物质粒子质量。 The scalability and background discrimination power of the liquid-noble bubble chamber make this technique a compelling candidate for future dark matter searches to the solar neutrino fog at 1 GeV$/c^2$ particle mass (requiring a $\sim$ton-year exposure with non-neutrino backgrounds sub-dominant to the solar CE$ν$NS signal) and for high-statistics CE$ν$NS studies at nuclear reactors.

The Scintillating Bubble Chamber (SBC) Collaboration is developing liquid-noble bubble chambers for the quasi-background-free detection of low-mass (GeV-scale) dark matter and coherent scattering of low-energy (MeV-scale) neutrinos (CE$ν$NS). The first physics-scale demonstrator of this technique, a 10-kg liquid argon bubble chamber dubbed SBC-LAr10, is now being commissioned at Fermilab. This device will calibrate the background discrimination power and sensitivity of superheated argon to nuclear recoils at energies down to 100 eV. A second functionally-identical detector with a focus on radiopure construction is being built for SBC's first dark matter search at SNOLAB. The projected spin-independent sensitivity of this search is approximately $10^{-43}$ cm$^2$ at 1 GeV$/c^2$ dark matter particle mass. The scalability and background discrimination power of the liquid-noble bubble chamber make this technique a compelling candidate for future dark matter searches to the solar neutrino fog at 1 GeV$/c^2$ particle mass (requiring a $\sim$ton-year exposure with non-neutrino backgrounds sub-dominant to the solar CE$ν$NS signal) and for high-statistics CE$ν$NS studies at nuclear reactors.

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