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While at Bell Laboratories, Bernard Yurke worked in a variety of fields, including low temperature physics, quantum optics, liquid crystals, biophysics, microelectromechanical systems (MEMS), and DNA nanotechnology. Highlights of his career include having served as the theorist for the Bell Laboratories team that was first to generate squeezed light, having been the first to experimentally demonstrate the generation of squeezed microwaves, and having been the first to construct a DNA-based nanodevice powered by DNA. His current research is focused on DNA nanotechnology.
Bernard Yurke became a Distinguished Member of Technical Staff at Bell Laboratories and a fellow of the Optical Society of America, the American Physical Society, and the American Association for the Advancement of Science. He was the 2001 recipient of the Max Born Award from the Optical Society of America for his work in quantum optics.
Bernard Yurke became a Distinguished Member of Technical Staff at Bell Laboratories and a fellow of the Optical Society of America, the American Physical Society, and the American Association for the Advancement of Science. He was the 2001 recipient of the Max Born Award from the Optical Society of America for his work in quantum optics.
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论文共 317 篇作者统计合作学者相似作者
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NANOSCALEno. 3 (2024): 1206-1222
Sebastián A. Díaz, Young C. Kim, Paul D. Cunningham,Divita Mathur,Igor L. Medintz,Donald L. Kellis,Bernard Yurke,William B. Knowlton, Joseph S. Melinger
Physical chemistry chemical physics : PCCPno. 41 (2023): 28437-28451
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Proceedings of the National Academy of Sciences of the United States of Americano. 22 (2023)
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KatelynM. Duncan, Hannah M. Byers, Madaline E. Houdek,Simon K. Roy,Austin Biaggne,Matthew S. Barclay,Lance K. Patten,Jonathan S. Huff,Donald L. Kellis,Christopher K. Wilson,Jeunghoon Lee,Paul H. Davis,
The journal of physical chemistry. Ano. 23 (2023): 4901-4918
Communications Chemistryno. 1 (2023): 1-16
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Natural computing seriespp.125-169, (2023)
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PHYSICAL REVIEW Ano. 1 (2023)
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