Scars from protected zero modes and beyond in $U(1)$ quantum link and quantum dimer models

We demonstrate the presence of anomalous high-energy eigenstates, or many-body scars, in $U(1)$ quantum link and quantum dimer models on square and rectangular lattices. In particular, we consider the paradigmatic Rokhsar-Kivelson Hamiltonian $H=\mathcal{O}_{\mathrm{kin}} + \lambda \mathcal{O}_{...

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Main Author: Saptarshi Biswas, Debasish Banerjee, Arnab Sen
Format: Article
Language:English
Published: SciPost 2022-05-01
Series:SciPost Physics
Online Access:https://scipost.org/SciPostPhys.12.5.148
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author Saptarshi Biswas, Debasish Banerjee, Arnab Sen
author_facet Saptarshi Biswas, Debasish Banerjee, Arnab Sen
author_sort Saptarshi Biswas, Debasish Banerjee, Arnab Sen
collection DOAJ
description We demonstrate the presence of anomalous high-energy eigenstates, or many-body scars, in $U(1)$ quantum link and quantum dimer models on square and rectangular lattices. In particular, we consider the paradigmatic Rokhsar-Kivelson Hamiltonian $H=\mathcal{O}_{\mathrm{kin}} + \lambda \mathcal{O}_{\mathrm{pot}}$ where $\mathcal{O}_{\mathrm{pot}}$ ($\mathcal{O}_{\mathrm{kin}}$) is defined as a sum of terms on elementary plaquettes that are diagonal (off-diagonal) in the computational basis. Both these interacting models possess an exponentially large number of mid-spectrum zero modes in system size at $\lambda=0$ that are protected by an index theorem preventing any mixing with the nonzero modes at this coupling. We classify different types of scars for $|\lambda| \lesssim \mathcal{O}(1)$ both at zero and finite winding number sectors complementing and significantly generalizing our previous work [Banerjee and Sen, Phys. Rev. Lett. 126, 220601 (2021)]. The scars at finite $\lambda$ show a rich variety with those that are composed solely from the zero modes of $\mathcal{O}_{\mathrm{kin}}$, those that contain an admixture of both the zero and the nonzero modes of $\mathcal{O}_{\mathrm{kin}}$, and finally those composed solely from the nonzero modes of $\mathcal{O}_{\mathrm{kin}}$. We give analytic expressions for certain "lego scars" for the quantum dimer model on rectangular lattices where one of the linear dimensions can be made arbitrarily large, with the building blocks (legos) being composed of emergent singlets and other more complicated entangled structures.
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spelling doaj.art-f9bd86c21b674e42bb74e5c6ae7522612022-12-22T02:54:34ZengSciPostSciPost Physics2542-46532022-05-0112514810.21468/SciPostPhys.12.5.148Scars from protected zero modes and beyond in $U(1)$ quantum link and quantum dimer modelsSaptarshi Biswas, Debasish Banerjee, Arnab SenWe demonstrate the presence of anomalous high-energy eigenstates, or many-body scars, in $U(1)$ quantum link and quantum dimer models on square and rectangular lattices. In particular, we consider the paradigmatic Rokhsar-Kivelson Hamiltonian $H=\mathcal{O}_{\mathrm{kin}} + \lambda \mathcal{O}_{\mathrm{pot}}$ where $\mathcal{O}_{\mathrm{pot}}$ ($\mathcal{O}_{\mathrm{kin}}$) is defined as a sum of terms on elementary plaquettes that are diagonal (off-diagonal) in the computational basis. Both these interacting models possess an exponentially large number of mid-spectrum zero modes in system size at $\lambda=0$ that are protected by an index theorem preventing any mixing with the nonzero modes at this coupling. We classify different types of scars for $|\lambda| \lesssim \mathcal{O}(1)$ both at zero and finite winding number sectors complementing and significantly generalizing our previous work [Banerjee and Sen, Phys. Rev. Lett. 126, 220601 (2021)]. The scars at finite $\lambda$ show a rich variety with those that are composed solely from the zero modes of $\mathcal{O}_{\mathrm{kin}}$, those that contain an admixture of both the zero and the nonzero modes of $\mathcal{O}_{\mathrm{kin}}$, and finally those composed solely from the nonzero modes of $\mathcal{O}_{\mathrm{kin}}$. We give analytic expressions for certain "lego scars" for the quantum dimer model on rectangular lattices where one of the linear dimensions can be made arbitrarily large, with the building blocks (legos) being composed of emergent singlets and other more complicated entangled structures.https://scipost.org/SciPostPhys.12.5.148
spellingShingle Saptarshi Biswas, Debasish Banerjee, Arnab Sen
Scars from protected zero modes and beyond in $U(1)$ quantum link and quantum dimer models
SciPost Physics
title Scars from protected zero modes and beyond in $U(1)$ quantum link and quantum dimer models
title_full Scars from protected zero modes and beyond in $U(1)$ quantum link and quantum dimer models
title_fullStr Scars from protected zero modes and beyond in $U(1)$ quantum link and quantum dimer models
title_full_unstemmed Scars from protected zero modes and beyond in $U(1)$ quantum link and quantum dimer models
title_short Scars from protected zero modes and beyond in $U(1)$ quantum link and quantum dimer models
title_sort scars from protected zero modes and beyond in u 1 quantum link and quantum dimer models
url https://scipost.org/SciPostPhys.12.5.148
work_keys_str_mv AT saptarshibiswasdebasishbanerjeearnabsen scarsfromprotectedzeromodesandbeyondinu1quantumlinkandquantumdimermodels