Application of Hard X-Ray and Gamma-Ray TES Microcalorimeter at Accelerator Facility
Takeshi Y Saito
1
,
T Saito
2
,
Shinji Okada
3, 4
,
Yuichi Toyama
3, 4
,
T. Azuma
1, 2
,
Baptista Goncalo
5, 6
,
Daniel T. Becker
7
,
D T Becker
8
,
Douglas Bennett
9, 10
,
William B Doriese
9
,
W. B. Doriese
10
,
J. W. Fowler
7, 8
,
Johnathon D Gard
7, 8
,
Tadashi Hashimoto
1, 2
,
R Hayakawa
11, 12
,
Tasuku Hayashi
13, 14
,
Yuto Ichinohe
2
,
Jozsef Imrek
9, 10
,
P. Indelicato
15, 16
,
Tadaaki Isobe
1, 2
,
Sohtaro Kanda
11, 12
,
N. Kawamura
11, 12
,
John A Mates
9, 10
,
Y. Miyake
11, 12
,
Kelsey M Morgan
7
,
K. Morgan
8
,
Hirofumi Noda
17, 18
,
Galen C Oneil
9
,
G. C. O’Neil
10
,
Takuma Okumura
19, 20
,
Nancy Paul
15, 16
,
Daniel R. Schmidt
9, 10
,
Kouichiro Shimomura
11, 12
,
P. Strasser
11, 12
,
Daniel S. Swetz
9, 10
,
Tadayuki Takahashi
21, 22
,
Motonobu Tampo
11, 12
,
Joel Ullom
9, 10
,
Izumi Umegaki
12
,
Joel C. Weber
7, 8
,
Shinya Yamada
13, 14
,
Daikang Yan
23, 24
5
NOVA, Portugal
|
6
NOVA, Carcavelos, Portugal
|
11
KEK, Japan
|
15
CoNRS, France
|
16
LKB, Paris, France
|
21
Kavli IPMU, Japan
|
22
Kavli IPMU, Kashiwa, Japan
|
23
IHEP, China
|
24
IHEP, Bei Jing, China
|
Publication type: Journal Article
Publication date: 2025-08-01
scimago Q2
wos Q3
SJR: 0.508
CiteScore: 3.4
Impact factor: 1.8
ISSN: 10518223, 15582515, 23787074
Abstract
The X-ray spectroscopy of the muonic atom has attracted atomic, nuclear, and particle physicists since its discovery. The properties of a muonic atom, such as its binding energy or atomic radius, are different from an ordinary atom because of the difference in the mass between the muon and electron. Our collaboration has employed superconductor transition-edge sensor (TES) microcalorimeters for the x-ray spectroscopy of the muonic atom. Thanks to the recent detector development, the 44-keV lines from muonic Ar, which is important for the precision test of bound-state quantum electrodynamics, and the 76-keV lines from muonic Si, which is of interest from the viewpoint of the measurement of nuclear radii, have been reached by the dynamic range of the state-of-art TES microcalorimeters. An accelerator facility that can produce a high-intensity muon beam is necessary for such spectroscopic experiments. We performed a commissioning experiment of the hard x-ray and gamma-ray TES microcalorimeter at the J-PARC MLF MUSE muon beam line. The energy resolution, gain stability, and performance of timing selection of the pulses were evaluated in the environment of a large-scale accelerator facility.
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Saito T. Y. et al. Application of Hard X-Ray and Gamma-Ray TES Microcalorimeter at Accelerator Facility // IEEE Transactions on Applied Superconductivity. 2025. Vol. 35. No. 5. pp. 1-5.
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Saito T. Y. et al. Application of Hard X-Ray and Gamma-Ray TES Microcalorimeter at Accelerator Facility // IEEE Transactions on Applied Superconductivity. 2025. Vol. 35. No. 5. pp. 1-5.
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TY - JOUR
DO - 10.1109/tasc.2024.3525445
UR - https://ieeexplore.ieee.org/document/10829768/
TI - Application of Hard X-Ray and Gamma-Ray TES Microcalorimeter at Accelerator Facility
T2 - IEEE Transactions on Applied Superconductivity
AU - Saito, Takeshi Y
AU - Saito, T
AU - Okada, Shinji
AU - Toyama, Yuichi
AU - Azuma, T.
AU - Goncalo, Baptista
AU - Becker, Daniel T.
AU - Becker, D T
AU - Bennett, Douglas
AU - Doriese, William B
AU - Doriese, W. B.
AU - Fowler, J. W.
AU - Gard, Johnathon D
AU - Hashimoto, Tadashi
AU - Hayakawa, R
AU - Hayashi, Tasuku
AU - Ichinohe, Yuto
AU - Imrek, Jozsef
AU - Indelicato, P.
AU - Isobe, Tadaaki
AU - Kanda, Sohtaro
AU - Kawamura, N.
AU - Mates, John A
AU - Miyake, Y.
AU - Morgan, Kelsey M
AU - Morgan, K.
AU - Noda, Hirofumi
AU - Oneil, Galen C
AU - O’Neil, G. C.
AU - Okumura, Takuma
AU - Paul, Nancy
AU - Schmidt, Daniel R.
AU - Shimomura, Kouichiro
AU - Strasser, P.
AU - Swetz, Daniel S.
AU - Takahashi, Tadayuki
AU - Tampo, Motonobu
AU - Ullom, Joel
AU - Umegaki, Izumi
AU - Weber, Joel C.
AU - Yamada, Shinya
AU - Yan, Daikang
PY - 2025
DA - 2025/08/01
PB - Institute of Electrical and Electronics Engineers (IEEE)
SP - 1-5
IS - 5
VL - 35
SN - 1051-8223
SN - 1558-2515
SN - 2378-7074
ER -
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BibTex (up to 50 authors)
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@article{2025_Saito,
author = {Takeshi Y Saito and T Saito and Shinji Okada and Yuichi Toyama and T. Azuma and Baptista Goncalo and Daniel T. Becker and D T Becker and Douglas Bennett and William B Doriese and W. B. Doriese and J. W. Fowler and Johnathon D Gard and Tadashi Hashimoto and R Hayakawa and Tasuku Hayashi and Yuto Ichinohe and Jozsef Imrek and P. Indelicato and Tadaaki Isobe and Sohtaro Kanda and N. Kawamura and John A Mates and Y. Miyake and Kelsey M Morgan and K. Morgan and Hirofumi Noda and Galen C Oneil and G. C. O’Neil and Takuma Okumura and Nancy Paul and Daniel R. Schmidt and Kouichiro Shimomura and P. Strasser and Daniel S. Swetz and Tadayuki Takahashi and Motonobu Tampo and Joel Ullom and Izumi Umegaki and Joel C. Weber and Shinya Yamada and Daikang Yan and others},
title = {Application of Hard X-Ray and Gamma-Ray TES Microcalorimeter at Accelerator Facility},
journal = {IEEE Transactions on Applied Superconductivity},
year = {2025},
volume = {35},
publisher = {Institute of Electrical and Electronics Engineers (IEEE)},
month = {aug},
url = {https://ieeexplore.ieee.org/document/10829768/},
number = {5},
pages = {1--5},
doi = {10.1109/tasc.2024.3525445}
}
Cite this
MLA
Copy
Saito, Takeshi Y., et al. “Application of Hard X-Ray and Gamma-Ray TES Microcalorimeter at Accelerator Facility.” IEEE Transactions on Applied Superconductivity, vol. 35, no. 5, Aug. 2025, pp. 1-5. https://ieeexplore.ieee.org/document/10829768/.
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