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Zhong, Youpeng, author.
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Quantum physics.
by
Ryan-Anderson, Ciarán, author.
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Quantum physics.
by
Scholten, Travis Luke, author.
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Quantum physics.
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Glosser, Connor Adrian, author.
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Quantum physics.
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Hassanpour, Nima, author.
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Quantum physics.
by
Leung, Nelson, author.
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Quantum physics.
by
Earnest, Nathan Don, author.
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Quantum physics.
by
Chester, David Alan, III, author.
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Quantum physics.
by
Lum, Daniel Jacob, author.
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Quantum physics.
by
Putra, Andika, author.
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Quantum physics.
by
Chen, Yizhang, author.
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Quantum physics.
by
Hu, Jiazhong, author.
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Quantum physics.
by
Low, Guang Hao, author.
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Quantum physics.
by
Okan, Melih, author.
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Quantum physics.
by
Liang, Qiyu, author.
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Quantum physics.
by
Beck, Matthew A., author.
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Quantum physics.
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Shastry, Abhay Shankar Chinivaranahalli, author.
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provides a mathematically rigorous foundation for temperature and voltage measurements in quantum systems
by
Ellis, Jennifer L., author.
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macroscopic physics or phase matching of HHG and therefore substantially modify the experimental conditions at
by
Marasinou, Chrysostomos, author.
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's application ranges over several fields in physics, from condensed matter physics to general relativity. In
by
Soto, Adrián, author.
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simulation framework to quantum-mechanically describe systems with low to intermediate correlation, from
by
Wickramasinghe, J. M. A. S. P., author.
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(semiclassical) quantum spectrum, the physics behind this phenomenon is due to a few shortest classically
by
Yu, Youliang, author.
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-field physics. Moreover, we have theoretically confirmed, for the first time, the existence of low energy
by
Schreiber, Katherine A., author.
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pressure. The fractional quantum Hall state at nu = 7/2 is expected to share the same physics as the nu = 5
by
Qian, Qi, author.
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) predictors of Delta5/2. We first consider quantum lifetime derived from low-field Shubnikov-de Haas (SdH
by
Shi, Qianhui, author.
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matter physics, generating both exotic phases and intriguing concepts. In the quantum limit, or the

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