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理学院“格物论坛”学术报告(五十三)

发布时间:2017-10-27

 Low dimensional (0D, 1D, 2D) devices for future electronics

报告人Shunri OdaProfessor of Tokyo Institute of Technology

 111 周三) 10:00

 理生楼A513多功能厅         

 

报告摘要 Quantum computing is no longer a future technology. Recent advances in D-Wave computers based on quantum annealing and superconducting devices, and the demonstration of long spin decoherence times in isotopically-enriched Si qubits, have accelerated the research and development of this technology. The remaining challenge is large scale integration of qubits. Physically-defined coupled quantum dots (QDs) on silicon-on-insulator substrates represent potential multiple scaled qubits.

报告人简介

Shunri Oda is a Professor in Department of Physical Electronics and Quantum Nanoelectronics Research Center, Tokyo Institute of Technology. His current research interests include fabrication of silicon quantum dots by pulsed plasma processes, single electron tunneling devices based on nanocrystalline silicon, ballistic transport in silicon nanodevices, silicon based quantum information devices, and NEMS hybrid devices. He is a Research Leader of MEXT Center of Innovation program. He has authored more than 700 technical papers in international journals and conferences including 200 invited papers. He edited books (with D. Ferry) “Silicon Nanoelectronics” (CRC Press, 2006) and “Nanoscale Silicon Devices” (CRC Press, 2015).  Prof. Oda is a Fellow of IEEE and Japan Society for Applied Physics, and a member of Electrochemical Society and Materials Research Society. He is a Distinguished Lecturer of IEEE Electron Devices Society.  

 

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