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Shane Cybart
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年份
Reversible electric control of exchange bias in a multiferroic field-effect device
SM Wu, SA Cybart, P Yu, MD Rossell, JX Zhang, R Ramesh, RC Dynes
Nature materials 9 (9), 756-761, 2010
8052010
Full electric control of exchange bias
SM Wu, SA Cybart, D Yi, JM Parker, R Ramesh, RC Dynes
Physical review letters 110 (6), 067202, 2013
3202013
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
2202015
MgB2 thin films by hybrid physical–chemical vapor deposition
XX Xi, AV Pogrebnyakov, SY Xu, K Chen, Y Cui, EC Maertz, CG Zhuang, ...
Physica C: Superconductivity 456 (1), 22-37, 2007
1622007
Very Large Scale Integration of Nanopatterned YBa2Cu3O7−δ Josephson Junctions in a Two-Dimensional Array
SA Cybart, SM Anton, SM Wu, J Clarke, RC Dynes
Nano letters 9 (10), 3581-3585, 2009
782009
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
692015
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
582018
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
502014
Planar thin film YBa2Cu3O7−δ Josephson junction pairs and arrays via nanolithography and ion damage
K Chen, SA Cybart, RC Dynes
Applied physics letters 85 (14), 2863-2865, 2004
492004
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
472018
Series array of incommensurate superconducting quantum interference devices from YBa2Cu3O7−δ ion damage Josephson junctions
SA Cybart, SM Wu, SM Anton, I Siddiqi, J Clarke, RC Dynes
Applied Physics Letters 93 (18), 182502-182502-3, 2008
452008
Planar MgB2 superconductor-normal metal-superconductor Josephson junctions fabricated using epitaxial MgB∕ TiB bilayers
K Chen, Y Cui, Q Li, XX Xi, SA Cybart, RC Dynes, X Weng, EC Dickey, ...
Applied physics letters 88, 222511, 2006
432006
Comparison of measurements and simulations of series-parallel incommensurate area superconducting quantum interference device arrays fabricated from YBa2Cu3O7−δ ion damage …
SA Cybart, TN Dalichaouch, SM Wu, SM Anton, JA Drisko, JM Parker, ...
Journal of Applied Physics 112 (6), 063911-063911-6, 2012
392012
Planar YBa2Cu3O7−δ ion damage Josephson junctions and arrays
SA Cybart, K Chen, RC Dynes
Applied Superconductivity, IEEE Transactions on 15 (2), 241-244, 2005
35*2005
Planar MgB2 Josephson junctions and series arrays via nanolithography and ion damage
SA Cybart, K Chen, Y Cui, Q Li, XX Xi, RC Dynes
Applied physics letters 88, 012509, 2006
282006
Method for fabrication of high aspect ratio trenches and formation of nanoscale features therefrom
RC Dynes, P Roediger, T Wong, SA Cybart
US Patent 9,653,309, 2017
262017
Temporal stability of Y-Ba-Cu-O nano Josephson junctions from ion irradiation
S Cybart, P Roediger, K Chen, J Parker, E Cho, T Wong, R Dynes
IEEE, 2013
252013
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
242020
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
202019
Study of closely spaced YBa2Cu3O7−δ Josephson junction pairs
K Chen, SA Cybart, RC Dynes
Applied Superconductivity, IEEE Transactions on 15 (2), 149-152, 2005
20*2005
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