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Lifted TASEP: Long-time dynamics, generalizations, and continuum limit

Abstract:
We investigate the lifted TASEP and its generalization, the GL-TASEP. We analyze the spectral properties of the transition matrix of the lifted TASEP using its Bethe ansatz solution, and use them to determine the scaling of the relaxation time (the inverse spectral gap) with particle number. The observed scaling with particle number was previously found to disagree with Monte Carlo simulations of the equilibrium autocorrelation times of the structure factor and of other large-scale density correlators for a particular value of the pullback \alpha_{\rm crit} . We explain this discrepancy. We then construct the continuum limit of the lifted TASEP, which remains integrable, and connect it to the event-chain Monte Carlo algorithm. The critical pullback \alpha_{\rm crit} then equals the system pressure. We generalize the lifted TASEP to a large class of nearest-neighbour interactions, which lead to stationary states characterized by non-trivial Boltzmann distributions. By tuning the pullback parameter in the GL-TASEP to a particular value we can again achieve a polynomial speedup in the time required to converge to the steady state. We comment on the possible integrability of the GL-TASEP.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.21468/scipostphyscore.8.4.063

Authors


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Institution:
University of Oxford
Role:
Author
ORCID:
0000-0002-1127-5830
More by this author
Role:
Author
ORCID:
0000-0003-0183-6726


Publisher:
SciPost
Journal:
SciPost Physics Core More from this journal
Volume:
8
Issue:
4
Pages:
063
Publication date:
2025-10-02
DOI:
EISSN:
2666-9366
ISSN:
2666-9366


Language:
English
Pubs id:
2310283
UUID:
uuid_f2dcd3a0-f897-4e87-b435-6b5ddfb1d947
Local pid:
pubs:2310283
Source identifiers:
W4414749679
Deposit date:
2025-11-08
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