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Quantum Simulation
Simulation of state evolutions in Gross-Neveu model by matrix product state representation
arXiv
Authors: De-Sheng Li, Hao Wang, Chu Guo, Ming Zhong, Ping-Xing Chen
Year
2020
Paper ID
19283
Status
Preprint
Abstract Read
~2 min
Abstract Words
123
Citations
N/A
Abstract
A quantum algorithm to simulate the real time dynamics of two-flavor massive Gross-Neveu model is presented in Schrodinger picture. We implement the simulation on a classic computer by applying the matrix product state representation. The real time evolutions of up to four particles on a site in initial state are figured out in space-time coordinate. The state evolutions are effectively affected by fermion mass and coupling constant of the model. Especially when the mass of fermion is small enough and the coupling is strong enough, the fundamental fermions evolve synchronistically in space from the two-fermion and four-fermion initial states. These are also the conditions on which the bound states made up of fundamental fermion pairs were found to arise automatically in the literatures.
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- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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- A quantum algorithm to simulate the real time dynamics of two-flavor massive Gross-Neveu model is presented in Schrodinger picture.
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