- Open Access
Eigenstate thermalization in the two-site SYK and SYK chain models
Phys. Rev. D 112, 026016 – Published 15 July, 2025
DOI: https://doi.org/10.1103/33fm-syj6
Abstract
A study of Rényi entanglement entropy in the Sachdev-Ye-Kitaev (SYK) chain of Majorana fermions suggested that the model does not rapidly thermalize, despite being maximally chaotic. In this work, I examine the eigenstate thermalization hypothesis (ETH) for both the SYK chain and the two-site SYK models using exact diagonalization. I focus on two physically motivated few-body observables: the one-body particle number operator and the two-body hopping operator. These operators provide insight into local occupation and, in certain contexts, may reflect aspects of transport. Both operators have been employed in previous studies of the ETH in related SYK models. I show that single realizations of both models approximately satisfy ETH conditions for these operators, while ensemble averages strictly satisfy the ETH. Therefore, I conclude that the finite-size SYK chain and two-site SYK models can rapidly thermalize with respect to these observables through the ETH mechanism. This suggests that the subthermal behavior observed in previous studies of Rényi entanglement entropy does not manifest in finite-size systems and that these systems can thermalize rapidly via their light modes. It also indicates that the proposed gravitational dual may undergo rapid thermalization.
Physics Subject Headings (PhySH)
See Also
Correlation functions and chaotic behavior of the SYK chain model in pure states
Article Text
References (24)
- J. M. Deutsch, Quantum statistical mechanics in a closed system, Phys. Rev. A 43, 2046 (1991).
- Mark Srednicki, Chaos and quantum thermalization, Phys. Rev. E 50, 888 (1994).
- Mark Srednicki, Thermal fluctuations in quantized chaotic systems, J. Phys. A 29, L75 (1996).
- Yingfei Gu, Andrew Lucas, and Xiao-Liang Qi, Spread of entanglement in a Sachdev-Ye-Kitaev chain, J. High Energy Phys. 9 (2017) 120.
- Yingfei Gu, Xiao-Liang Qi, and Douglas Stanford, Local criticality, diffusion and chaos in generalized Sachdev-Ye-Kitaev models, J. High Energy Phys. 05 (2017) 125.
- A Kitaev, A simple model of quantum holography, in KITP Strings Seminar and Entanglement (2015).
- Juan Maldacena and Douglas Stanford, Remarks on the Sachdev-Ye-Kitaev model, Phys. Rev. D 94, 106002 (2016).
- S. W. Hawking, Breakdown of predictability in gravitational collapse, Phys. Rev. D 14, 2460 (1976).
- Geoffrey Penington, Entanglement wedge reconstruction and the information paradox, J. High Energy Phys. 09 (2020) 002.
- Ahmed Almheiri, Netta Engelhardt, Donald Marolf, and Henry Maxfield, The entropy of bulk quantum fields and the entanglement wedge of an evaporating black hole, J. High Energy Phys. 12 (2019) 063.
- Ahmed Almheiri, Raghu Mahajan, Juan Maldacena, and Ying Zhao, The Page curve of Hawking radiation from semiclassical geometry, J. High Energy Phys. 03 (2020) 149.
- Ahmed Almheiri, Raghu Mahajan, and Juan Maldacena, Islands outside the horizon, arXiv:1910.11077.
- Ahmed Almheiri, Raghu Mahajan, and Jorge Santos, Entanglement Islands in higher dimensions, SciPost Phys. 9, 001 (2020).
- Ahmed Almheiri, Thomas Hartman, Juan Maldacena, Edgar Shaghoulian, and Amirhossein Tajdini, Replica wormholes and the entropy of Hawking radiation, J. High Energy Phys. 05 (2020) 013.
- Alishahiha Mohsen, Astaneh Amin Faraji, and Naseh Ali, Island in the presence of higher derivative terms, J. High Energy Phys. 02 (2021) 035.
- Raphael Bousso and Marija Tomašević, Unitarity from a smooth horizon?, Phys. Rev. D 102, 106019 (2020).
- Phil Saad, Stephen H. Shenker, Douglas Stanford, and Shunyu Yao, Wormholes without averaging, J. High Energy Phys. 09 (2024) 133.
- Nicholas Hunter-Jones, Junyu Liu, and Yehao Zhou, On thermalization in the SYK and supersymmetric SYK models, J. High Energy Phys. 02 (2018) 142.
- Julian Sonner and Manuel Vielma, Eigenstate thermalization in the Sachdev-Ye-Kitaev model, J. High Energy Phys. 11 (2017) 149.
- Antonio M. García-García and Jacobus J. M. Verbaarschot, Spectral and thermodynamic properties of the Sachdev-Ye-Kitaev model, Phys. Rev. D 94, 126010 (2016).
- Antonio M. García-García, Yiyang Jia, and Jacobus J. M. Verbaarschot, Universality and thouless energy in the supersymmetric Sachdev-Ye-Kitaev model, Phys. Rev. D 97, 106003 (2018).
- Gabor Sarosi, holography and the SYK model, Proc. Sci. Modave2017 (2018) 001.
- Ramanjit Sohal, Laimei Nie, Xiao-Qi Sun, and Eduardo Fradkin, Thermalization of randomly coupled SYK models, J. Stat. Mech. (2022) P013103.
- Micha Berkooz, Prithvi Narayan, Moshe Rozali, and Joan Simón, Higher dimensional generalizations of the SYK model, J. High Energy Phys. 01 (2017) 138.