Use Single SignOn (SSO) to login with your home institute's login service and credentials.

Nuclear and Particle Physics

Recent results from the LZ experiment dark matter searches

by Dr Knut Morå (Zurich University)

→ Europe/Stockholm
Å92110 (Ångström)

Å92110

Ångström

Description

LUX-ZEPLIN (LZ) is the world's most sensitive direct detection experiment to weak-scale dark matter-matter interactions. Using a two-phase time projection chamber containing an active mass of seven tonnes of liquid xenon, the collaboration has published results for a 4.2 tonne-year exposure, achieving world-leading limits and a sensitivity to spin-independent WIMP-nucleon interactions for a $40~\mathrm{GeV/}c^2$ WIMP of $5.1^{-48}~\mathrm{cm}^2$. 

A follow-up search with the same data set, extending the search window up to $270~\mathrm{keV}$, has yielded one event consistent with a nuclear recoil of $240\pm23~(\text{stat})\pm23~(\text{syst})~\mathrm{keV}$, which is difficult to explain with any known background, and which corresponded to a $2.6~\sigma$ global significance across the search space. I will describe the LZ data and analysis, with a particular emphasis on the effort to understand and model the high energy nuclear recoil region in light of this result.