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Ethan Cho
Ethan Cho
University of California, Riverside
Verified email at physics.ucsd.edu
Title
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Cited by
Year
Nano Josephson superconducting tunnel junctions in YBa2Cu3O7–δ directly patterned with a focused helium ion beam
SA Cybart, EY Cho, TJ Wong, BH Wehlin, MK Ma, C Huynh, RC Dynes
Nature nanotechnology 10 (7), 598-602, 2015
2142015
YBa2Cu3O7− δ superconducting quantum interference devices with metallic to insulating barriers written with a focused helium ion beam
EY Cho, MK Ma, C Huynh, K Pratt, DN Paulson, VN Glyantsev, RC Dynes, ...
Applied physics letters 106 (25), 2015
652015
Superconducting nano Josephson junctions patterned with a focused helium ion beam
EY Cho, YW Zhou, JY Cho, SA Cybart
Applied physics letters 113 (2), 2018
552018
Development of 2-D Bi-SQUID arrays with high linearity
S Berggren, G Prokopenko, P Longhini, A Palacios, OA Mukhanov, ...
IEEE transactions on applied superconductivity 23 (3), 1400208-1400208, 2013
522013
Large voltage modulation in magnetic field sensors from two-dimensional arrays of Y-Ba-Cu-O nano Josephson junctions
SA Cybart, EY Cho, TJ Wong, VN Glyantsev, JU Huh, CS Yung, ...
Applied Physics Letters 104 (6), 2014
482014
Direct-coupled micro-magnetometer with Y-Ba-Cu-O nano-slit SQUID fabricated with a focused helium ion beam
EY Cho, H Li, JC LeFebvre, YW Zhou, RC Dynes, SA Cybart
Applied physics letters 113 (16), 2018
412018
Temporal stability of Y–Ba–Cu–O nano josephson junctions from ion irradiation
SA Cybart, P Roediger, K Chen, JM Parker, EY Cho, TJ Wong, RC Dynes
IEEE transactions on applied superconductivity 23 (3), 1100103-1100103, 2012
232012
Inductance Investigation of YBa2Cu3O7−δ Nano-Slit SQUIDs Fabricated With a Focused Helium Ion Beam
H Li, EY Cho, H Cai, YT Wang, SJ McCoy, SA Cybart
IEEE Transactions on Applied Superconductivity 29 (5), 1-4, 2019
192019
High-transition-temperature nanoscale superconducting quantum interference devices directly written with a focused helium ion beam
H Li, H Cai, EY Cho, SJ McCoy, YT Wang, JC LeFebvre, YW Zhou, ...
Applied Physics Letters 116 (7), 2020
182020
Series arrays of planar long Josephson junctions for high dynamic range magnetic flux detection
JC LeFebvre, E Cho, H Li, K Pratt, SA Cybart
AIP Advances 9 (10), 2019
162019
Method for fabricating superconducting devices using a focused ion beam
SA Cybart, EY Cho, RC Dynes, TJ Wong
US Patent 10,224,475, 2019
152019
Comparison of Y–Ba–Cu–O Films Irradiated With Helium and Neon Ions for the Fabricationof Josephson Devices
SA Cybart, PXT Yen, EY Cho, JU Huh, VN Glyantsev, CS Yung, ...
IEEE transactions on applied superconductivity 24 (4), 1-5, 2014
132014
Large scale two-dimensional arrays of magnesium diboride superconducting quantum interference devices
SA Cybart, TJ Wong, EY Cho, JW Beeman, CS Yung, BH Moeckly, ...
Applied Physics Letters 104 (18), 182604, 2014
122014
Correlation of structural, magnetic, and electronic transitions of a novel charge-gradient film
BJ Taylor, CA McElroy, IK Lum, AML de Escobar, MC De Andrade, ...
Physical Review B 91 (14), 144511, 2015
102015
Inductance of YBaCuO Thin-Films With and Without Superconducting Ground Planes
H Cai, H Li, EY Cho, SA Cybart
IEEE Transactions on Applied Superconductivity 30 (7), 1-5, 2020
92020
Magnetic flux-to-voltage transducer based on josephson junction arrays
SA Cybart, TJ Wong, RC Dynes, EY Cho
US Patent 10,205,081, 2019
92019
Inductance investigation of YBa
H Li, EY Cho, H Cai, YT Wang, SJ McCoy, SA Cybart
IEEE Trans. Appl. Supercond 29 (5), 2019
72019
The effects of annealing a 2-dimensional array of ion-irradiated Josephson junctions
EY Cho, K Kouperine, Y Zhuo, RC Dynes, SA Cybart
Superconductor Science and Technology 29 (9), 094004, 2016
72016
YBaCuOSingle Flux Quantum Flip Flop Directly Written With a Focused Helium Ion Beam
H Cai, H Li, EY Cho, JC LeFebvre, SA Cybart
IEEE Transactions on Applied Superconductivity 31 (5), 1-5, 2021
62021
Fabrication of BiSrCaCuO ab-Plane Josephson Junctions by a Focused Helium Ion Beam
YT Wang, JC LeFebvre, EY Cho, SJ McCoy, H Li, G Gu, K Kadowaki, ...
IEEE Transactions on Applied Superconductivity 31 (5), 1-4, 2021
62021
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