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161por J. D. Clarkson, I. Fina, Z. Q. Liu, Y. Lee, J. Kim, C. Frontera, K. Cordero, S. Wisotzki, F. Sanchez, J. Sort, S. L. Hsu, C. Ko, L. Aballe, M. Foerster, J. Wu, H. M. Christen, J. T. Heron, D. G. Schlom, S. Salahuddin, N. Kioussis, J. Fontcuberta, X. Marti, R. Ramesh“... of antiferromagnetic – ferromagnetic interactions for spintronics....”
Publicado 2017
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162por Heng Gao, Wei Wu, Tao Hu, Alessandro Stroppa, Xinran Wang, Baigeng Wang, Feng Miao, Wei Ren“... and valley spintronics....”
Publicado 2018
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163por Robert Ionescu, Brennan Campbell, Ryan Wu, Ece Aytan, Andrew Patalano, Isaac Ruiz, Stephen W. Howell, Anthony E. McDonald, Thomas E. Beechem, K. Andre Mkhoyan, Mihrimah Ozkan, Cengiz S. Ozkan“... applications of spintronics. Here in, a facile and reproducible method of producing wafer scale atomically thin...”
Publicado 2017
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164por David A. Connelly, Gyorgy Csaba, Hadrian Renaldo O. Aquino, Gary H. Bernstein, Alexei Orlov, Wolfgang Porod, Jonathan Chisum“... such as Boolean spintronics, analog spin-wave-computing, and magnetic microwave circuits are expected to benefit...”
Publicado 2021
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165por Tomohiro Nozaki, Shingo Tamaru, Makoto Konoto, Takayuki Nozaki, Hitoshi Kubota, Akio Fukushima, Shinji Yuasa“...Abstract There is urgent need for spintronics materials exhibiting a large voltage modulation...”
Publicado 2021
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166por Lebing Chen, Jae-Ho Chung, Matthew B. Stone, Alexander I. Kolesnikov, Barry Winn, V. Ovidiu Garlea, Douglas L. Abernathy, Bin Gao, Mathias Augustin, Elton J. G. Santos, Pengcheng Dai“... spintronics. In the 2D vdW ferromagnetic (FM) honeycomb lattice CrI_{3} (T_{C}=61 K), acoustic and optical...”
Publicado 2021
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167por Edoardo Fertitta, Sujit Das, Debalina Banerjee, Farbod Ebrahimi, Clément Barraud, Kai Du, He Tian, Chris J. Pickard, Cedric Weber, Ramamoorthy Ramesh, Peter Littlewood, David Dubbink“... applications such as spintronics and electrically tunable devices. However, great practical limitations...”
Publicado 2021
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168por Matthew J. Coak, David M. Jarvis, Hayrullo Hamidov, Andrew R. Wildes, Joseph A. M. Paddison, Cheng Liu, Charles R. S. Haines, Ngoc T. Dang, Sergey E. Kichanov, Boris N. Savenko, Sungmin Lee, Marie Kratochvílová, Stefan Klotz, Thomas C. Hansen, Denis P. Kozlenko, Je-Geun Park, Siddharth S. Saxena“... physics research, as well as for potential applications in spintronics and device physics. We present...”
Publicado 2021
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169“... and magnetism, graphone and graphane show important applications in nanoelectronics and spintronics. Because...”
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170“...2D electron gas for nanoscale spintronic deviceseditor Calculations reveal the potential for a...”
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171por Ying-Jiun Chen, Markus Hoffmann, Bernd Zimmermann, Gustav Bihlmayer, Stefan Blügel, Claus M. Schneider, Christian Tusche“...Spintronic devices, where the spin of the electron becomes the main carrier of information, offer a...”
Publicado 2021
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172por Sumito Tsunegi, Tomohiro Taniguchi, Daiki Suzuki, Kay Yakushiji, Akio Fukushima, Shinji Yuasa, Hitoshi Kubota“...Abstract Neuromorphic computing using spintronic devices, such as spin-torque oscillators (STOs...”
Publicado 2021
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173“...Abstract Topological insulators (TI) have extremely high potential in spintronic applications. Here...”
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174“...Spin caloritronics offers advantages for the thermal management of spintronic devices. Here...”
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175por Taqiyyah S. Safi, Pengxiang Zhang, Yabin Fan, Zhongxun Guo, Jiahao Han, Ethan R. Rosenberg, Caroline Ross, Yaraslov Tserkovnyak, Luqiao Liu“...The interconversion of spin and charge is fundamental to the operation of spintronic devices. Here...”
Publicado 2020
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176por A. Haykal, J. Fischer, W. Akhtar, J.-Y. Chauleau, D. Sando, A. Finco, F. Godel, Y. A. Birkhölzer, C. Carrétéro, N. Jaouen, M. Bibes, M. Viret, S. Fusil, V. Jacques, V. Garcia“...Tailoring antiferromagnetic domains is critical for the development of low-dissipative spintronic...”
Publicado 2020
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177por Sergey Dushenko, Masaya Hokazono, Kohji Nakamura, Yuichiro Ando, Teruya Shinjo, Masashi Shiraishi“...The ability to electrically control spintronic materials significantly widens their potential...”
Publicado 2018
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178“...Exploring the helicity-orbital coupling induced skyrmion properties is essential for the spintronic...”
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179por Sanjay Singh, S. W. D’Souza, J. Nayak, E. Suard, L. Chapon, A. Senyshyn, V. Petricek, Y. Skourski, M. Nicklas, C. Felser, S. Chadov“... of spintronic devices. Here, the authors evidence an exchange-stabilized helix state with a low energy barrier...”
Publicado 2016
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180por Samik DuttaGupta, A. Kurenkov, Oleg A. Tretiakov, G. Krishnaswamy, G. Sala, V. Krizakova, F. Maccherozzi, S. S. Dhesi, P. Gambardella, S. Fukami, H. Ohno“...Antiferromagnets (AFMs) are prospective for future spintronic devices, owing to their speed...”
Publicado 2020
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