フォロー
Takayuki Kubo
Takayuki Kubo
その他の名前久保毅幸
High Energy Accelerator Research Organization (KEK)
確認したメール アドレス: post.kek.jp - ホームページ
タイトル
引用先
引用先
Multilayer coating for higher accelerating fields in superconducting radio-frequency cavities: a review of theoretical aspects
T Kubo
Superconductor Science and Technology 30 (2), 023001, 2016
872016
Radio-frequency electromagnetic field and vortex penetration in multilayered superconductors
T Kubo, Y Iwashita, T Saeki
Applied Physics Letters 104 (3), 032603, 2014
842014
Surface impedance and optimum surface resistance of a superconductor with an imperfect surface
A Gurevich, T Kubo
Physical Review B 96 (18), 184515, 2017
832017
Field-dependent nonlinear surface resistance and its optimization by surface nanostructuring in superconductors
T Kubo, A Gurevich
Physical Review B 100 (6), 064522, 2019
762019
The international linear collider: Report to snowmass 2021
A Aryshev, T Behnke, M Berggren, J Brau, N Craig, A Freitas, F Gaede, ...
arXiv preprint arXiv:2203.07622, 2022
60*2022
Dependence of trapped-flux-induced surface resistance of a large-grain Nb superconducting radio-frequency cavity on spatial temperature gradient during cooldown through T c
S Huang, T Kubo, RL Geng
Physical Review Accelerators and Beams 19 (8), 082001, 2016
552016
Flux trapping in superconducting accelerating cavities during cooling down with a spatial temperature gradient
T Kubo
Progress of Theoretical and Experimental Physics 2016 (5), 053G01, 2016
402016
Optimization of tailored multilayer superconductors for RF application and protection against premature vortex penetration
CZ Antoine, M Aburas, A Four, F Weiss, Y Iwashita, H Hayano, S Kato, ...
Superconductor Science and Technology 32 (8), 085005, 2019
352019
Field limit and nano-scale surface topography of superconducting radio-frequency cavity made of extreme type II superconductor
T Kubo
Progress of Theoretical and Experimental Physics 2015 (6), 063G01, 2015
322015
Superheating fields of semi-infinite superconductors and layered superconductors in the diffusive limit: structural optimization based on the microscopic theory
T Kubo
Superconductor Science and Technology 34 (4), 045006, 2021
272021
Superfluid flow in disordered superconductors with Dynes pair-breaking scattering: Depairing current, kinetic inductance, and superheating field
T Kubo
Physical Review Research 2 (3), 033203, 2020
272020
Magnetic field enhancement at a pit on the surface of a superconducting accelerating cavity
T Kubo
Progress of Theoretical and Experimental Physics 2015 (7), 073G01, 2015
23*2015
Next-Generation Superconducting RF Technology based on Advanced Thin Film Technologies and Innovative Materials for Accelerator Enhanced Performance and Energy Reach
AM Valente-Feliciano, C Antoine, S Anlage, G Ciovati, J Delayen, ...
arXiv preprint arXiv:2204.02536, 2022
212022
In-house production of a large-grain single-cell cavity at cavity fabrication facility and results of performance tests
T Kubo, H Inoue, Y Ajima, Y Watanabe, M Yamanaka, K Umemori
IPAC2014, Dresden, Germany, WEPRI022, p.2519, 2014
212014
Weak-field dissipative conductivity of a dirty superconductor with Dynes subgap states under a dc bias current up to the depairing current density
T Kubo
Physical Review Research 2 (1), 013302, 2020
202020
Radiative B–L symmetry breaking and the Z′ mediated SUSY breaking
T Kikuchi, T Kubo
Physics Letters B 666 (3), 262-268, 2008
192008
Effects of Nonmagnetic Impurities and Subgap States on the Kinetic Inductance, Complex Conductivity, Quality Factor, and Depairing Current Density
T Kubo
Physical Review Applied 17 (1), 014018, 2022
152022
Observation of intermediate mixed state in high-purity cavity-grade Nb by magneto-optical imaging
S Ooi, M Tachiki, T Konomi, T Kubo, A Kikuchi, S Arisawa, H Ito, ...
Physical Review B 104 (6), 064504, 2021
142021
An Impartial Perspective for Superconducting Nb3Sn coated Copper RF Cavities for Future Accelerators
E Barzi, BC Barish, RA Rimmer, A Valente-Feliciano, CM Rey, ...
arXiv preprint arXiv:2203.09718, 2022
13*2022
Challenges and opportunities of srf theory for next generation particle accelerators
A Gurevich, T Kubo, JA Sauls
arXiv preprint arXiv:2203.08315, 2022
102022
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