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Population transfer in quantum β-Fermi-Pasta-Ulam-Tsingou chains with fixed ends
Jinwen Cai1, Xiangyu Xu2, Luis Vasquez1
1School of Science, Hangzhou Dianzi University, Hangzhou 310018, China.
None:
We perform a series of numerically accurate tensor-train (TT) simulations of population dynamics and energy transfer in quantum β-Fermi-Pasta-Ulam-Tsingou (FPUT) chains comprising 10 to 30 nonlinear oscillators. The dynamics are propagated over timescales ranging from 18 to 60 fundamental vibrational periods. We demonstrate that the chain anharmonicity opens new energy-transfer channels, accelerates initial ballistic energy propagation, reduces (partial) recurrence periods relative to the harmonic limit, and regularizes oscillatory wavepacket motion. This work serves as the first proof-of-principle demonstration of the high efficiency of TT methods for simulating quantum FPUT dynamics.
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