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Tiema Qian
Tiema Qian
Graduate student in Physics department, UCLA
Verified email at g.UCLA.edu
Title
Cited by
Cited by
Year
Evidence for a strain-tuned topological phase transition in ZrTe5
J Mutch, WC Chen, P Went, T Qian, IZ Wilson, A Andreev, CC Chen, ...
Science advances 5 (8), eaav9771, 2019
1212019
Revealing the competition between charge density wave and superconductivity in through uniaxial strain
T Qian, MH Christensen, C Hu, A Saha, BM Andersen, RM Fernandes, ...
Physical Review B 104 (14), 144506, 2021
602021
Quantum metric nonlinear Hall effect in a topological antiferromagnetic heterostructure
A Gao, YF Liu, JX Qiu, B Ghosh, T V. Trevisan, Y Onishi, C Hu, T Qian, ...
Science 381 (6654), 181-186, 2023
582023
Magnetic dilution effect and topological phase transitions in
T Qian, YT Yao, C Hu, E Feng, H Cao, II Mazin, TR Chang, N Ni
Physical Review B 106 (4), 045121, 2022
182022
Unconventional pressure-driven metamagnetic transitions in topological van der Waals magnets
T Qian, E Emmanouilidou, C Hu, JC Green, II Mazin, N Ni
Nano Letters 22 (13), 5523-5529, 2022
102022
Dual quantum spin Hall insulator by density-tuned correlations in TaIrTe4
J Tang, TS Ding, H Chen, A Gao, T Qian, Z Huang, Z Sun, X Han, ...
Nature 628 (8008), 515-521, 2024
22024
Apparatus design for measuring of the strain dependence of the Seebeck coefficient of single crystals
T Qian, J Mutch, L Wu, P Went, Q Jiang, P Malinowski, J Yang, JH Chu
Review of Scientific Instruments 91 (2), 2020
22020
Recent progress in MnBi2nTe3n+1 intrinsic magnetic topological insulators: crystal growth, magnetism and chemical disorder
C Hu, T Qian, N Ni
National Science Review 11 (2), nwad282, 2024
12024
Single crystal growth, chemical defects, magnetic and transport properties of antiferromagnetic topological insulators (GeMn)BiTe (, )
T Qian, C Hu, JC Green, E Feng, H Cao, N Ni
arXiv preprint arXiv:2404.17764, 2024
2024
Observation of the dual quantum spin Hall insulator by density-tuned correlations in a van der Waals monolayer
J Tang, TS Ding, H Chen, A Gao, T Qian, Z Huang, Z Sun, X Han, ...
arXiv preprint arXiv:2403.15912, 2024
2024
Pressure induced dimensional crossing in a quasi-one-dimensional superconductor
T Qian, Y Wang, S Mardanya, B Ghosh, I Mazin, S Chowdhury, Y Ando, ...
Bulletin of the American Physical Society, 2024
2024
Observation of the antiferromagnetic diode effect
A Gao, S Chen, B Ghosh, JX Qiu, Y Liu, Y Onishi, C Hu, T Qian, D Bérubé, ...
Bulletin of the American Physical Society, 2024
2024
Evidence for quantum spin Hall effect in a new van der Waals monolayer
J Tang, S Ding, H Chen, A Gao, T Qian, Z Huang, Z Sun, K Watanabe, ...
Bulletin of the American Physical Society, 2024
2024
Quantum metric nonlinear Hall effect in a topological antiferromagnet
A Gao, YF Liu, JX Qiu, B Ghosh, TV Trevisan, Y Onishi, C Hu, T Qian, ...
arXiv preprint arXiv:2306.09575, 2023
2023
The effects of coupling Kagome superconductor CsV3Sb5 with a s-wave superconductor
B Han, S Kim, P Ong, N Ni, T Qian, X Chen, J Ying
APS March Meeting Abstracts 2023, K42. 009, 2023
2023
Magnetic photocurrent in even-layered topological antiferromagnet MnBi2Te4
Z Huang, Z Sun, A Gao, T Qian, S Ding, J Tang, K Watanabe, T Taniguchi, ...
APS March Meeting Abstracts 2023, S43. 003, 2023
2023
Quantum electron transport in ternary transition metal chalcogenide TaIrTe4
J Tang, S Ding, Y Li, T Qian, A Gao, K Watanabe, T Taniguchi, D Bell, ...
APS March Meeting Abstracts 2023, D19. 011, 2023
2023
RF Characterization on Nb-based Superconducting Silicon Interconnect Fabric for Future Large Scale Quantum Applications
YT Yang, H Ren, SK Chong, G Qiu, SY Ku, Y Cheng, C Hu, T Qian, ...
2022 IEEE 72nd Electronic Components and Technology Conference (ECTC), 949-955, 2022
2022
ARPES study of the Mn-Bi-Te natural heterostructural families
B Berggren, R Kurleto, D Narayan, C Hu, T Qian, N Ni, D Dessau
APS March Meeting Abstracts 2022, W68. 011, 2022
2022
High harmonic generation in topological chiral crystals
P Padmanabhan, TA Cochran, N Sirica, T Qian, N Ni, DA Yarotski, JX Zhu, ...
CLEO: QELS_Fundamental Science, FTu1L. 1, 2021
2021
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