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Bio
Assistant Professor of Electrical and Computer Engineering
Associated Faculty in the Princeton Institute for the Science and Technology of Materials (PRISM)
My research explores methods to gain control over individual atoms for computing, communications and sensing technology. When isolated, atoms display manifestly quantum mechanical behavior, routinely doing things like being in two places at the same time or getting entangled with their neighbors. In macroscopic clumps like computer chips, these effects are washed out. However, there is strong motivation to try to build computers and communications devices in such a way that the quantum properties of individual atoms can be retained because devices operating according to quantum laws can offer dramatic advantages in terms of power and security.
Associated Faculty in the Princeton Institute for the Science and Technology of Materials (PRISM)
My research explores methods to gain control over individual atoms for computing, communications and sensing technology. When isolated, atoms display manifestly quantum mechanical behavior, routinely doing things like being in two places at the same time or getting entangled with their neighbors. In macroscopic clumps like computer chips, these effects are washed out. However, there is strong motivation to try to build computers and communications devices in such a way that the quantum properties of individual atoms can be retained because devices operating according to quantum laws can offer dramatic advantages in terms of power and security.
Research Interests
Papers共 74 篇Author StatisticsCo-AuthorSimilar Experts
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OPTICAno. 2 (2024): 227-233
arxiv(2024)
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Michael Peper, Yiyi Li, Daniel Y. Knapp, Mila Bileska,Shuo Ma,Genyue Liu, Pai Peng,Bichen Zhang,Sebastian P. Horvath,Alex P. Burgers,Jeff D. Thompson
arxiv(2024)
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arxiv(2024)
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arXiv (Cornell University) (2023)
arXiv (Cornell University) (2023)
NATUREno. 7982 (2023): 279-+
arXiv (Cornell University) (2023)
Physical Review Xno. 4 (2023): 041013
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