Editorial for the Special Issue on Magnetic and Spin Devices, Volume II
Conflicts of Interest
List of Contributions
- Khosravi, P.; Seyyed Ebrahimi, S.A.; Lalegani, Z.; Hamawandi, B. Anisotropic Magnetoresistance Evaluation of Electrodeposited Ni80Fe20 Thin Film on Silicon. Micromachines 2022, 13, 1804. https://doi.org/10.3390/mi13111804.
- Fiorentini, S.; Jørstad, N.P.; Ender, J.; de Orio, R.L.; Selberherr, S.; Bendra, M.; Goes, W.; Sverdlov, V. Finite Element Approach for the Simulation of Modern MRAM Devices. Micromachines 2023, 14, 898. https://doi.org/10.3390/mi14050898.
- Hadámek, T.; Jørstad, N.P.; de Orio, R.L.; Goes, W.; Selberherr, S.; Sverdlov, V. A Comprehensive Study of Temperature and Its Effects in SOT-MRAM Devices. Micromachines 2023, 14, 1581. https://doi.org/10.3390/mi14081581.
- Chen, W.; Tang, H.; Wang, Y.; Hu, X.; Lin, Y.; Min, T.; Xie, Y. E-Spin: A Stochastic Ising Spin Based on Electrically-Controlled MTJ for Constructing Large-Scale Ising Annealing Systems. Micromachines 2023, 14, 258. https://doi.org/10.3390/mi14020258.
- Jongjaihan, C.; Kaewrawang, A. Micromagnetic Simulation of L10-FePt-Based Transition Jitter of Heat-Assisted Magnetic Recording at Ultrahigh Areal Density. Micromachines 2022, 13, 1559. https://doi.org/10.3390/mi13101559.
- Guo, J.; Li, L.; Qin, P.; Wang, J.; Ni, C.; Zhu, X.; Lu, D.; Tang, J. Optimization Design of Magnetic Isolation Ring Position in AC Solenoid Valves for Dynamic Response Performances. Micromachines 2022, 13, 1065. https://doi.org/10.3390/mi13071065.
- Li, N.; Li, X.; Xu, B.; Zheng, B.; Zhao, P. Design and Optimization of a Micron-Scale Magnetoelectric Antenna Based on Acoustic Excitation. Micromachines 2022, 13, 1584. https://doi.org/10.3390/mi13101584.
- Khitun, A. Magnetic Interconnects Based on Composite Multiferroics. Micromachines 2022, 13, 1991. https://doi.org/10.3390/mi13111991.
- Tasin, M.A.; Aziz, S.A.A.; Mazlan, S.A.; Johari, M.A.F.; Nordin, N.A.; Yusuf, S.Y.M.; Choi, S.-B.; Bahiuddin, I. Magnetostriction Enhancement in Midrange Modulus Magnetorheological Elastomers for Sensor Applications. Micromachines 2023, 14, 767. https://doi.org/10.3390/mi14040767.
- Nhalil, H.; Schultz, M.; Amrusi, S.; Grosz, A.; Klein, L. High Sensitivity Planar Hall Effect Magnetic Field Gradiometer for Measurements in Millimeter Scale Environments. Micromachines 2022, 13, 1898. https://doi.org/10.3390/mi13111898.
References
- Johnson, M. Magnetoelectronics; Elsevier: Amsterdam, The Netherlands, 2004. [Google Scholar]
- Fabian, J.; Matos-Abiague, A.; Ertler, C.; Stano, P.; Zutic, I. Semiconductor Spintronics. Acta Phys. Slovaca 2007, 57, 565–907. [Google Scholar] [CrossRef]
- Jansen, R. Silicon Spintronics. Nat. Mater. 2012, 11, 400–408. [Google Scholar] [CrossRef] [PubMed]
- Sverdlov, V.; Jittong, N. Editorial for the Special Issue on Magnetic and Spin Devices. Micromachines 2022, 13, 493. [Google Scholar] [CrossRef] [PubMed]
- Nishino, J.; Chatani, S.; Uotani, Y.; Nosaka, Y. Electrodeposition Method for Controlled Formation of CdS Films from Aqueous Solutions. J. Electroanal. Chem. 1999, 473, 217–222. [Google Scholar] [CrossRef]
- Selberherr, S. Analysis and Simulation of Semiconductor Devices; Springer: Berlin/Heidelberg, Germany, 1984. [Google Scholar]
- Apalkov, D.; Dieny, B.; Slaughter, J.M. Magnetoresistive Random Access Memory. Proc. IEEE 2016, 104, 1796–1830. [Google Scholar] [CrossRef]
- Hu, G.; Safranski, C.; Sun, J.Z.; Hashemi, P.; Brown, S.L.; Bruley, J.; Buzi, L.; D’Emic, C.P.; Galligan, E.; Gottwald, M.G.; et al. Double Spin-torque Magnetic Tunnel Junction Devices for Last-level Cache Applications. In Proceedings of the 2022 International Electron Devices Meeting (IEDM), San Francisco, CA, USA, 2–8 December 2022; pp. 10.2.1–10.2.4. [Google Scholar] [CrossRef]
- Jinnai, B.; Igarashi, J.; Shinoda, T.; Watanabe, K.; Fukami, S.; Ohno, H. Fast Switching Down to 3.5 ns in Sub-5-nm Magnetic Tunnel Junctions Achieved by Engineering Relaxation Time. In Proceedings of the 2021 IEEE International Electron Devices Meeting (IEDM), San Francisco, CA, USA, 11–16 December 2021; pp. 1–4. [Google Scholar] [CrossRef]
- Lu, J.; Li, W.; Liu, J.; Liu, Z.; Wang, Y.; Jiang, C.; Du, J.; Lu, S.; Lei, N.; Peng, S.; et al. Voltage-gated Spin-orbit Torque Switching in IrMn-based Perpendicular Magnetic Tunnel Junctions. Appl. Phys. Lett. 2023, 122, 012402. [Google Scholar] [CrossRef]
- Thomas, L.; Jan, G.; Serrano-Guisan, S.; Liu, H.; Zhu, J.; Lee, Y.-J.; Le, S.; Iwata-Harms, J.; Tong, R.-Y.; Patel, S.; et al. STT-MRAM Devices with Low Damping and Moment Optimized for LLC Applications at Ox Nodes. In Proceedings of the 2018 IEEE International Electron Devices Meeting (IEDM), San Francisco, CA, USA, 1–5 December 2018; pp. 27.3.1–27.3.4. [Google Scholar]
- Böhm, F.; Verschaffelt, G.; Van Der Sande, G. A Poor Man’s Coherent Ising Machine Based on Opto-electronic Feedback Systems for Solving Optimization Problems. Nat. Commun. 2019, 10, 3538. [Google Scholar] [CrossRef]
- Wei, D.-H.; Chen, S.-C.; Yang, C.-J.; Huang, R.-T.; Dong, C.-L.; Yao, Y.-D. Formation of FePt–MgO Nanocomposite Films at Reduced Temperature. J. Compos. Sci. 2022, 6, 158. [Google Scholar] [CrossRef]
- Zhang, Q.; Zhang, P.-R.; Su, Y.-T.; Mou, C.-B.; Zhou, T.; Yang, M.-L.; Xu, J.; Ma, B. On-demand Control of Microfluidic Flow via Capillary-tuned Solenoid Microvalve Suction. Lab. Chip. 2014, 14, 4599–4603. [Google Scholar] [CrossRef] [PubMed]
- Yao, Z.; Wang, Y.E.; Keller, S.; Carman, G.P. Bulk Acoustic Wave-Mediated Multiferroic Antennas: Architecture and Performance Bound. IEEE Trans. Antennas Progag. 2015, 63, 3335–3344. [Google Scholar] [CrossRef]
- Balinskiy, M.; Chavez, A.C.; Barra, A.; Chiang, H.; Carman, G.P.; Khitun, A. Magnetoelectric Spin Wave Modulator Based On Synthetic Multiferroic Structure. Sci. Rep. 2018, 8, 10867. [Google Scholar] [CrossRef] [PubMed]
- Ahn, J.; Gu, J.; Choi, J.; Han, C.; Jeong, Y.; Park, J.; Cho, S.; Oh, Y.S.; Jeong, J.H.; Amjadi, M.; et al. A Review of Recent Advances in Electrically Driven Polymer-Based Flexible Actuators: Smart Materials, Structures, and Their Applications. Adv. Mater. Technol. 2022, 7, 2200041. [Google Scholar] [CrossRef]
- Feiner, R.; Dvir, T. Tissue–electronics Interfaces: From Implantable Devices to Engineered Tissues. Nat. Rev. Mater. 2017, 3, 17076. [Google Scholar] [CrossRef]
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Sverdlov, V.; Choi, S.-B. Editorial for the Special Issue on Magnetic and Spin Devices, Volume II. Micromachines 2023, 14, 2131. https://doi.org/10.3390/mi14112131
Sverdlov V, Choi S-B. Editorial for the Special Issue on Magnetic and Spin Devices, Volume II. Micromachines. 2023; 14(11):2131. https://doi.org/10.3390/mi14112131
Chicago/Turabian StyleSverdlov, Viktor, and Seung-Bok Choi. 2023. "Editorial for the Special Issue on Magnetic and Spin Devices, Volume II" Micromachines 14, no. 11: 2131. https://doi.org/10.3390/mi14112131
APA StyleSverdlov, V., & Choi, S. -B. (2023). Editorial for the Special Issue on Magnetic and Spin Devices, Volume II. Micromachines, 14(11), 2131. https://doi.org/10.3390/mi14112131