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Related papers: IsoDAR@Yemilab: A Report on the Technology, Capabi…

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This Conceptual Design Report addresses the site-specific issues associated with the deployment of the IsoDAR experiment at the Yemilab site. IsoDAR@Yemilab pairs the IsoDAR cyclotron-driven $\bar{\nu}_e$ source with the proposed Liquid…

IsoDAR@Yemilab is a unique facility for underground neutrino physics. The system comprises an accelerator-driven $\bar{\nu}_e$ source located next to the Yemilab LSC 2.3 kt detector. Because this facility is first-of-its-kind, it opens new…

High Energy Physics - Experiment · Physics 2022-03-22 J. R. Alonso , J. M. Conrad , Y. D. Kim , S. H. Seo , M. H. Shaevitz , J. Spitz , D. Winklehner

IsoDAR seeks to place a high-power-cyclotron and target combination, as an intense source of $\bar{\nu}_e$ at the level of $\sim 10^{23}$/year, close to a kiloton-scale neutrino detector in order to gain sensitivity to very short-baseline…

High Energy Physics - Experiment · Physics 2022-04-06 J. Alonso , C. A. Argüelles , A. Bungau , J. M. Conrad , B. Dutta , Y. D. Kim , E. Marzec , D. Mishins , S. H. Seo , M. Shaevitz , J. Spitz , A. Thompson , L. Waites , D. Winklehner

The Center for Underground Physics of the Institute for Basic Science (IBS) in Korea has been planning the construction of a deep underground laboratory since 2013 to search for extremely rare interactions such as dark matter and neutrinos.…

Instrumentation and Methods for Astrophysics · Physics 2024-05-09 K. S. Park , Y. D. Kim , K. M. Bang , H. K Park , M. H. Lee , J. H. Jang , J. H. Kim , J. So , S. H. Kim , S. B. Kim

The demand for underground labs for neutrino and rare event search experiments has been increasing over the last few decades. Yemilab, constructed in October 2022, is the first deep ($\sim$1~km) underground lab dedicated to science in…

We report on the measurement of neutron energy spectra at the newly established Yemi Underground Laboratory (Yemilab) in the Republic of Korea, designed to host dark matter and rare-event search experiments. A high-sensitivity neutron…

Configurations of the IsoDAR and DAE{\delta}ALUS decay-at-rest neutrino experiments are described. Injector and cyclotron developments aimed at substantial increases in beam current are discussed. The IsoDAR layout and target are described,…

Instrumentation and Detectors · Physics 2016-11-14 Jose R. Alonso

A new underground lab, Yemilab, is being constructed in Handuk iron mine, Korea. The default design of Yemilab includes a space for a future neutrino experiment. We propose to build a water-based liquid scintillator (WbLS) detector of…

Instrumentation and Detectors · Physics 2019-03-14 Seon-Hee Seo

This document describes requirements for the caverns to house the cyclotron, beam transport line, and target systems; issues associated with transport and assembly of components on the site; electrical power, cooling and ventilation; as…

Instrumentation and Detectors · Physics 2019-08-14 Jose R. Alonso , K. Nakamura

This conceptual design report describes the technical facility for the IsoDAR electron-antineutrino source at KamLAND. The IsoDAR source will allow an impressive program of neutrino oscillation and electroweak physics to be performed at…

IsoDAR is an experiment under development to search for sterile neutrinos using the isotope Decay-At-Rest (DAR) production mechanism, where protons impinging on $^9$Be create neutrons which capture on $^7$Li which then beta-decays producing…

This technical report reviews the tests performed at the Best Cyclotron Systems, Inc. facility in regards to developing a cost effective ion source, beam line transport system, and acceleration system capable of high H$_2^+$ current output…

The radiation emitted from radon is a critical background in rare event search experiments conducted at the Yemi Underground Laboratory (Yemilab) in Jeongseon, Korea. A Radon Reduction System(RRS) has been developed and installed in Yemilab…

Instrumentation and Detectors · Physics 2024-05-09 Kyungmin Seo , Hyunsoo Kim , Yeongduk Kim , Hyeyoung Lee , Jaison Lee , Moo Hyun Lee , Jungho So , Sangcheol Yoon , Youngsoo Yoon

The focus of this paper is on optimizing the electron-antineutrino source for the IsoDAR (Isotope Decay at Rest) experimental program. IsoDAR will perform sensitive short-baseline neutrino oscillation and electroweak measurements, among…

Instrumentation and Detectors · Physics 2019-05-22 Adriana Bungau , Jose Alonso , Larry Bartoszek , Janet Conrad , Michael Shaevitz , Joshua Spitz

The {$\bf\nu EYE$} (``new eye'', Neutrino Experiment at YEmilab, \href{https://sites.google.com/korea.ac.kr/the-nueye-telescope} {\tt nuEYE.korea.ac.kr}) neutrino project leverages the existing large pit at Yemilab located in South Korea,…

Several experimental collaborations worldwide intend to test sterile neutrino models by measuring the disappearance of antineutrinos produced via isotope decay at rest (IsoDAR). The most advanced of these proposals have very similar setups,…

Instrumentation and Detectors · Physics 2018-01-22 Emilio Ciuffoli , Hosam Mohammed , Jarah Evslin , Fengyi Zhao , Maksym Deliyergiyev

This Preliminary Design Report (PDR) describes the IsoDAR electron-antineutrino source in two volumes which are mostly site-independent and describe the cyclotron driver providing a 60 MeV, 10 mA proton beam (Volume I); and the medium…

The IsoDAR antineutrino source, which produces a flux from 8Li isotope decay at rest, when paired with the proposed JUNO (Jiangmen Underground Neutrino Observatory) detector, has unprecedented sensitivity to anti-nu_e disappearance for…

High Energy Physics - Experiment · Physics 2014-03-19 J. M. Conrad , M. H. Shaevitz

This whitepaper reviews design options for the IsoDAR electron antineutrino source. IsoDAR is designed to produce $2.6 \times 10^{22}$ electron antineutrinos per year with an average energy of 6.4 MeV, using isotope decay-at-rest. Aspects…

This Preliminary Design Report (PDR) describes the IsoDAR electron-antineutrino source in two volumes which are mostly site-independent and describe the cyclotron driver providing a 60 MeV, 10 mA proton beam (this Volume); and the medium…

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