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I am interested in spintronics and spin-dependent phenomena that span a wide range of topics and materials, from predicting novel, strongly-correlated states in semiconductor nanostructures to studying fundamental properties of unconventional superconductors. I work on formulating a theoretical framework to predict and describe unexplored spin-dependent phenomena in solid-state systems, as well as on proposing spintronic devices that could lead to applications that would be ineffective or not feasible with conventional electronics, from spin lasers and spin transistors to topologically-protected quantum computing. Many of our predictions are experimentally verified and we closely collaborate with a number of experimental groups. The techniques we use range from analytical methods, rate equations, and mean-field models, to first-principles studies, Monte Carlo simulations, and many-body calculations.
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论文共 196 篇作者统计合作学者相似作者
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arxiv(2024)
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Pambiang Abel Dainone, Nicholas Figueiredo Prestes,Pierre Renucci, Alexandre Bouché,Martina Morassi,Xavier Devaux,Markus Lindemann,Jean-Marie George,Henri Jaffrès,Aristide Lemaitre,Bo Xu,Mathieu Stoffel,
Natureno. 8005 (2024): 783-788
Pambiang Abel Dainone, Nicholas Figueiredo Prestes,Pierre Renucci, Alexandre Bouché,Martina Morassi,Xavier Devaux,Markus Lindemann,Jean-Marie George,Henri Jaffrès,Aristide Lemaitre,Bo Xu,Mathieu Stoffel,
Naturepp.1-1, (2024)
Ti Xie,Shanchuan Liang, Samuel Deitemyer,Qinqin Wang,Tong Zhou,Igor Žutić,Xixiang Zhang,Dongsheng Yuan,Xiang Zhang,Cheng Gong
Materials Today Electronics (2024): 100081
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PHYSICAL REVIEW Bno. 16 (2023)
Nano lettersno. 15 (2023): 7107-7113
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NATURE ELECTRONICSno. 3 (2023): 199-205
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