Segui
Michał Papaj
Michał Papaj
Moore Postdoctoral Fellow, UC Berkeley
Email verificata su berkeley.edu
Titolo
Citata da
Citata da
Anno
Nearly quantized conductance plateau of vortex zero mode in an iron-based superconductor
S Zhu, L Kong, L Cao, H Chen, M Papaj, S Du, Y Xing, W Liu, D Wang, ...
Science 367 (6474), 189-192, 2020
2032020
Half-integer level shift of vortex bound states in an iron-based superconductor
L Kong, S Zhu, M Papaj, H Chen, L Cao, H Isobe, Y Xing, W Liu, D Wang, ...
Nature Physics 15 (11), 1181-1187, 2019
1772019
Designing quantum dots for solotronics
J Kobak, T Smoleński, M Goryca, M Papaj, K Gietka, A Bogucki, ...
Nature communications 5 (1), 3191, 2014
1532014
Nodal arc of disordered Dirac fermions and non-Hermitian band theory
M Papaj, H Isobe, L Fu
Physical Review B 99 (20), 201107, 2019
1342019
A new Majorana platform in an Fe-As bilayer superconductor
W Liu, L Cao, S Zhu, L Kong, G Wang, M Papaj, P Zhang, YB Liu, H Chen, ...
Nature Communications 11 (1), 5688, 2020
1032020
Discovery of segmented Fermi surface induced by Cooper pair momentum
Z Zhu, M Papaj, XA Nie, HK Xu, YS Gu, X Yang, D Guan, S Wang, Y Li, ...
Science 374 (6573), 1381-1385, 2021
612021
Majorana zero modes in impurity-assisted vortex of LiFeAs superconductor
L Kong, L Cao, S Zhu, M Papaj, G Dai, G Li, P Fan, W Liu, F Yang, ...
Nature Communications 12 (1), 4146, 2021
55*2021
Magnus Hall Effect
M Papaj, L Fu
Physical Review Letters 123 (21), 216802, 2019
512019
Andreev reflection at the altermagnet-superconductor interface
M Papaj
Physical Review B 108 (6), L060508, 2023
232023
Enhanced anomalous Nernst effect in disordered Dirac and Weyl materials
M Papaj, L Fu
Physical Review B 103 (7), 075424, 2021
232021
Plasmonic nonreciprocity driven by band hybridization in moiré materials
M Papaj, C Lewandowski
Physical Review Letters 125 (6), 066801, 2020
222020
Creating Majorana modes from segmented Fermi surface
M Papaj, L Fu
Nature communications 12 (1), 577, 2021
202021
Multichannel charge Kondo effect and non-Fermi-liquid fixed points in conventional and topological superconductor islands
M Papaj, Z Zhu, L Fu
Physical Review B 99 (1), 014512, 2019
142019
Photoluminescence studies of giant Zeeman effect in MBE-grown cobalt-based dilute magnetic semiconductors
M Papaj, J Kobak, JG Rousset, E Janik, M Nawrocki, P Kossacki, A Golnik, ...
Journal of crystal growth 401, 644-647, 2014
132014
Conductance oscillations in quantum point contacts of InAs/GaSb heterostructures
M Papaj, Ł Cywiński, J Wróbel, T Dietl
Physical Review B 93 (19), 195305, 2016
112016
Direct determination of the zero-field splitting for a single ion embedded in a CdTe/ZnTe quantum dot
J Kobak, A Bogucki, T Smoleński, M Papaj, M Koperski, M Potemski, ...
Physical Review B 97 (4), 045305, 2018
102018
Current-enabled optical conductivity of superconductors
M Papaj, JE Moore
Physical Review B 106 (22), L220504, 2022
92022
Suspended graphene devices with local gate control on an insulating substrate
FR Ong, Z Cui, MA Yurtalan, C Vojvodin, M Papaj, JLFX Orgiazzi, C Deng, ...
Nanotechnology 26 (40), 405201, 2015
92015
MBE growth and magnetooptical properties of (Zn, Co) Te layers
M Papaj, J Kobak, J Rousset, E Janik, A Golnik, P Kossacki, W Pacuski
Acta Physica Polonica A 122 (6), 1010-1011, 2012
82012
Probing correlated states with plasmons
M Papaj, C Lewandowski
Science Advances 9 (17), eadg3262, 2023
52023
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–20