Jian-Ping Wang
Jian-Ping Wang
Verified email at umn.edu - Homepage
Cited by
Cited by
Spin transfer in nanomagnetic devices with perpendicular anisotropy
H Meng, JP Wang
Applied physics letters 88 (17), 172506, 2006
Magnetomicelles: composite nanostructures from magnetic nanoparticles and cross-linked amphiphilic block copolymers
BS Kim, JM Qiu, JP Wang, TA Taton
Nano letters 5 (10), 1987-1991, 2005
A scaling roadmap and performance evaluation of in-plane and perpendicular MTJ based STT-MRAMs for high-density cache memory
KC Chun, H Zhao, JD Harms, TH Kim, JP Wang, CH Kim
IEEE Journal of Solid-State Circuits 48 (2), 598-610, 2012
Crystallite size effect on saturation magnetization of fine ferrimagnetic particles
DH Han, JP Wang, HL Luo
Journal of Magnetism and Magnetic Materials 136 (1-2), 176-182, 1994
In situ ordering of FePt thin films with face-centered-tetragonal (001) texture on underlayer at low substrate temperature
Y Xu, JS Chen, JP Wang
Applied physics letters 80 (18), 3325-3327, 2002
Giant Spin Pumping and Inverse Spin Hall Effect in the Presence of Surface and Bulk Spin−Orbit Coupling of Topological Insulator Bi2Se3
M Jamali, JS Lee, JS Jeong, F Mahfouzi, Y Lv, Z Zhao, BK Nikolić, ...
Nano letters 15 (10), 7126-7132, 2015
Current-confined effect of magnetic nano-current-channel (NCC) for magnetic random access memory (MRAM)
J Wang
US Patent 7,732,881, 2010
Switching current reduction using perpendicular anisotropy in CoFeB–MgO magnetic tunnel junctions
P Khalili Amiri, ZM Zeng, J Langer, H Zhao, G Rowlands, YJ Chen, ...
Applied Physics Letters 98 (11), 112507, 2011
Exchange coupled composite media for perpendicular magnetic recording
JP Wang, W Shen, J Bai
IEEE transactions on magnetics 41 (10), 3181-3186, 2005
Room-temperature high spin–orbit torque due to quantum confinement in sputtered Bi x Se (1–x) films
DC Mahendra, R Grassi, JY Chen, M Jamali, DR Hickey, D Zhang, Z Zhao, ...
Nature materials 17 (9), 800-807, 2018
High-magnetic-moment core-shell-type nanoparticles
J Bai, JP Wang
Applied Physics Letters 87 (15), 152502, 2005
Low writing energy and sub nanosecond spin torque transfer switching of in-plane magnetic tunnel junction for spin torque transfer random access memory
H Zhao, A Lyle, Y Zhang, PK Amiri, G Rowlands, Z Zeng, J Katine, H Jiang, ...
Journal of Applied Physics 109 (7), 07C720, 2011
Spin-based computing: Device concepts, current status, and a case study on a high-performance microprocessor
J Kim, A Paul, PA Crowell, SJ Koester, SS Sapatnekar, JP Wang, CH Kim
Proceedings of the IEEE 103 (1), 106-130, 2014
Programmable spintronics logic device based on a magnetic tunnel junction element
J Wang, H Meng, JP Wang
Journal of applied physics 97 (10), 10D509, 2005
A detection system based on giant magnetoresistive sensors and high‐moment magnetic nanoparticles demonstrates zeptomole sensitivity: potential for personalized medicine
B Srinivasan, Y Li, Y Jing, YH Xu, X Yao, C Xing, JP Wang
Angewandte Chemie 121 (15), 2802-2805, 2009
Composite media (dynamic tilted media) for magnetic recording
JP Wang, WK Shen, JM Bai, RH Victora, JH Judy, WL Song
Applied Physics Letters 86 (14), 142504, 2005
High-power coherent microwave emission from magnetic tunnel junction nano-oscillators with perpendicular anisotropy
Z Zeng, PK Amiri, IN Krivorotov, H Zhao, G Finocchio, JP Wang, JA Katine, ...
ACS nano 6 (7), 6115-6121, 2012
Direct gas‐phase synthesis of heterostructured nanoparticles through phase separation and surface segregation
YH Xu, JP Wang
Advanced Materials 20 (5), 994-999, 2008
FePt magnetic nanoparticles and their assembly for future magnetic media
JP Wang
Proceedings of the IEEE 96 (11), 1847-1863, 2008
SPICE macromodel of spin-torque-transfer-operated magnetic tunnel junctions
JD Harms, F Ebrahimi, X Yao, JP Wang
IEEE transactions on electron devices 57 (6), 1425-1430, 2010
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