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Related papers: Developing a silica aerogel radiator for the HELIX…

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This study presents the development of large-area (18 $\times $ 18 $\times $ 2 cm$^3$), high refractive index ($n \sim $1.05) hydrophobic silica aerogel tiles for use as Cherenkov radiators. These transparent aerogel tiles will be installed…

Instrumentation and Detectors · Physics 2017-01-03 Makoto Tabata , Ichiro Adachi , Yoshikiyo Hatakeyama , Hideyuki Kawai , Takeshi Morita , Takayuki Sumiyoshi

In this paper, we present recent progress in the development of hydrophobic silica aerogel as a Cherenkov radiator. In addition to the conventional method, the recently developed pin-drying method for producing high-refractive-index…

Instrumentation and Detectors · Physics 2012-10-03 Makoto Tabata , Ichiro Adachi , Hideyuki Kawai , Masato Kubo , Takeshi Sato

This paper presents recent progress in the development and mass production of large-area hydrophobic silica aerogels for use as radiators in the aerogel-based ring-imaging Cherenkov (A-RICH) counter, which will be installed in the forward…

We report recent progress in the development of large-area hydrophobic silica aerogels for use as radiators in the aerogel-based ring-imaging Cherenkov (A-RICH) counter to be installed in the forward end cap of the Belle II detector, which…

Instrumentation and Detectors · Physics 2014-11-18 Makoto Tabata , Ichiro Adachi , Hideyuki Kawai , Shohei Nishida , Takayuki Sumiyoshi

Silica aerogels are important to be used as photon radiators in Cherenkov counters for high-energy-physics experiments because of their optical transparency and intermediate refractive indices between those of gases and liquids or solids.…

Instrumentation and Detectors · Physics 2023-10-10 Makoto Tabata

This study presents the advancement in hydrophobic silica aerogel development for use as Cherenkov radiators and muonium production targets. These devices are scheduled for use in several particle- and nuclear-physics experiments that are…

Instrumentation and Detectors · Physics 2017-08-23 Makoto Tabata , Hideyuki Kawai

We present optical and X-ray radiographical characterization of silica aerogels with refractive index from 1.05 to 1.07 for a Cherenkov radiator. A novel pin-drying method enables us to produce highly transparent hydrophobic aerogels with…

Instrumentation and Detectors · Physics 2014-11-18 Makoto Tabata , Ichiro Adachi , Yoshikiyo Hatakeyama , Hideyuki Kawai , Takeshi Morita , Keiko Nishikawa

New highly transparent, hydrophobic silica aerogels with refractive indices of 1.01 to 1.07 have been produced by Aspen Aerogels, Inc., and select tiles have been tested using an electron beam at the DESY, Hamburg facility. A…

Instrumentation and Detectors · Physics 2018-01-15 D. Blyth , R. Alarcon , R. Begag , J. Holmes , J. Stryker

We have succeeded in developing hydrophobic silica aerogels over a wide range of densities (i.e. refractive indices). A pinhole drying method was invented to make possible producing highly transparent aerogels with entirely new region of…

Instrumentation and Detectors · Physics 2011-12-22 Makoto Tabata , Ichiro Adachi , Yoshikazu Ishii , Hideyuki Kawai , Takayuki Sumiyoshi , Hiroshi Yokogawa

This study presents the development of hydrophobic silica aerogel for use as a radiator in threshold-type Cherenkov counters. These counters are to be used for separating positrons and positive muons produced by kaon decay in the J-PARC…

Instrumentation and Detectors · Physics 2015-06-22 Makoto Tabata , Akihisa Toyoda , Hideyuki Kawai , Youichi Igarashi , Jun Imazato , Suguru Shimizu , Hirohito Yamazaki

A collaboration between the Boreskov Institute of Catalysis and the Budker Institute of Nuclear Physics (BINP) has been producing silica aerogel blocks for Cherenkov detectors since 1986. Novosibirsk-manufactured aerogel is used in several…

Instrumentation and Detectors · Physics 2026-04-22 A. Yu. Barnyakov , A. F. Danilyuk , A. A. Kattsin , E. A. Kravchenko , A. A. Pochtar , A. Yu. Predein

The HELIX cosmic-ray detector is a balloon-borne instrument designed to measure the flux of light isotopes in the energy range from 0.2 GeV/n to beyond 3 GeV/n. It will rely on a ring-imaging Cherenkov (RICH) detector for particle…

This paper proposes a new X-ray radiographic technique for measuring density uniformity of silica aerogels used as radiator in proximity-focusing ring-imaging Cherenkov detectors. To obtain high performance in a large-area detector, a key…

Instrumentation and Detectors · Physics 2012-12-17 Makoto Tabata , Yoshikiyo Hatakeyama , Ichiro Adachi , Takeshi Morita , Keiko Nishikawa

To identify $\pi^{\pm}$ and $K^{\pm}$ in the region of $1.0\sim 2.5$ GeV/c, a threshold Cherenkov counter equipped with silica aerogels has been investigated. Silica aerogels with a low refractive index of 1.013 have been successfully…

High Energy Physics - Experiment · Physics 2009-10-22 I. Adachi et al

We measured the radiation damage on silica aerogel \v Cerenkov radiators originally developed for the $B$-factory experiment at KEK. Refractive index of the aerogel samples ranged from 1.012 to 1.028. The samples were irradiated up to…

High Energy Physics - Experiment · Physics 2010-03-26 S. K. Sahu et al

Using aerogel as radiator and multianode PMTs for photon detection, a proximity focusing Cherenkov ring imaging detector has been constructed and tested in the KEK $\pi$2 beam. The aim is to experimentally study the basic parameters such as…

High Energy Physics - Experiment · Physics 2009-01-09 I. Adachi , I. Bizjak , A. Gorisek , T. Iijima , M. Iwamoto , S. Korpar , P. Krizan , R. Pestotnik , M. Staric , A. Stanovnik , T. Sumiyoshi , K. Suzuki , T. Tabata

The ALICE Collaboration is proposing a completely new apparatus, ALICE~3, for the LHC Runs~5 and beyond. In this context, a key subsystem for high-energy charged particle identification will be a proximity-focusing ring-imaging Cherenkov…

We have developed a new type of particle identification device, called an Aerogel Ring Imaging Cherenkov (ARICH) counter, for the Belle II experiment. It uses silica aerogel tiles as Cherenkov radiators. For detection of Cherenkov photons,…

The ALICE Collaboration is proposing a completely new apparatus, ALICE 3, for the LHC Run 5 and beyond. A key subsystem for charged particle identification will be a Ring-Imaging Cherenkov (RICH) detector consisting of an aerogel radiator…

A proximity focusing ring imaging Cherenkov detector using aerogel as the radiator has been studied for an upgrade of the Belle detector at the KEK-B-factory. We constructed a prototype Cherenkov counter using a 4 x 4 array of 64-channel…

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