The RED-100 two-phase emission detector


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Abstract

The RED-100 experimental setup, which is designed to detect elastic coherent neutrino scattering off xenon nuclei, is described. One specific feature of this setup is the possibility of using it in above ground experiments. The setup is based on the RED-100 two-phase emission detector in which liquid xenon is used as a working medium for detection of rare events. The results of the technical run with the setup are presented. These are the evidence of the normal operation of all systems and the readiness of the setup for carrying out an experiment.

About the authors

D. Yu. Akimov

Moscow Engineering Physics Institute National Research Nuclear University; Alikhanov Institute for Theoretical and Experimental Physics

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; Moscow, 117218

I. S. Aleksandrov

Tomsk National Research Polytechnic University

Email: shalexey91@mail.ru
Russian Federation, Tomsk, 634050

V. A. Belov

Moscow Engineering Physics Institute National Research Nuclear University; Alikhanov Institute for Theoretical and Experimental Physics

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; Moscow, 117218

A. I. Bolozdynya

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. A. Burenkov

Moscow Engineering Physics Institute National Research Nuclear University; Alikhanov Institute for Theoretical and Experimental Physics

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; Moscow, 117218

K. F. Vlasik

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

Yu. V. Gusakov

Moscow Engineering Physics Institute National Research Nuclear University; Joint Institute for Nuclear Research

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; Dubna, Moscow oblast, 141980

V. V. Dmitrenko

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. G. Dolgolenko

Alikhanov Institute for Theoretical and Experimental Physics

Email: shalexey91@mail.ru
Russian Federation, Moscow, 117218

Yu. V. Efremenko

Moscow Engineering Physics Institute National Research Nuclear University; University of Tennessee

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; 1331 Circle Park Drive, Knoxville, Tennessee, 37996

V. A. Kaplin

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. G. Kovalenko

Moscow Engineering Physics Institute National Research Nuclear University; Alikhanov Institute for Theoretical and Experimental Physics

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; Moscow, 117218

E. S. Kozlova

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. M. Konovalov

Moscow Engineering Physics Institute National Research Nuclear University; Alikhanov Institute for Theoretical and Experimental Physics

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; Moscow, 117218

T. D. Krakhmalova

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. V. Kumpan

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

Yu. A. Melikyan

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

P. P. Naumov

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

D. G. Rudik

Moscow Engineering Physics Institute National Research Nuclear University; Alikhanov Institute for Theoretical and Experimental Physics

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; Moscow, 117218

I. S. Saldikov

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

V. V. Sosnovtsev

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

G. V. Tikhomirov

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. A. Tobolkin

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

I. A. Tolstukhin

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. V. Khromov

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

Z. M. Uteshev

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. V. Shakirov

Moscow Engineering Physics Institute National Research Nuclear University

Author for correspondence.
Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

R. R. Shafigullin

Moscow Engineering Physics Institute National Research Nuclear University

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409

A. V. Etenko

Moscow Engineering Physics Institute National Research Nuclear University; Kurchatov Institute National Research Center

Email: shalexey91@mail.ru
Russian Federation, Moscow, 115409; Moscow, 123182

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