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Applications of Nanomechanical Devices: Wireless Communications and Sensors
Our research in this specific area focuses on the development of ultra-high-frequency (UHF) oscillators, filters and frequency-selective elements for eventual use as high-speed sensors and communication systems. Our systems are nanomechanical oscillators, and they vibrate at speeds exceeding 2 GHz—the highest mechanical frequency ever reported. Because of their mechanical construct and the small size, they will enable a host of future applications. Currently, we are exploring specific applications, which include nanomechanical memory elements for high-speed high-density data storage and gigahertz-range nanomechanical oscillators for use as frequency-selecting device in cellular phones.
Quantum Computing: Quantum Control of Coherence of the Electron Wave Function
Applications of Nanomechanical Devices: Wireless Communications and Sensors
Our research in this specific area focuses on the development of ultra-high-frequency (UHF) oscillators, filters and frequency-selective elements for eventual use as high-speed sensors and communication systems. Our systems are nanomechanical oscillators, and they vibrate at speeds exceeding 2 GHz—the highest mechanical frequency ever reported. Because of their mechanical construct and the small size, they will enable a host of future applications. Currently, we are exploring specific applications, which include nanomechanical memory elements for high-speed high-density data storage and gigahertz-range nanomechanical oscillators for use as frequency-selecting device in cellular phones.
Quantum Computing: Quantum Control of Coherence of the Electron Wave Function
研究兴趣
论文共 139 篇作者统计合作学者相似作者
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Katherine A. Muratore,Dan Zhou,Jiangang J. Du, John S. Chlystek,Kasra Motesadi, Erik K. Larsen, Brenda M. Molgora, Tetz C. Lee,Sudhakar Pamarti,Shyamsunder Erramilli,Pritiraj Mohanty
Communications Engineeringno. 1 (2023)
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