Excitation spectrum of a double supersolid in a trapped dipolar Bose mixture

Fuente: arXiv
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Main Authors: Scheiermann, Daniel, Gallemí, Albert, Santos, Luis
Format: Preprint
Published: 2024
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author Scheiermann, Daniel
Gallemí, Albert
Santos, Luis
author_facet Scheiermann, Daniel
Gallemí, Albert
Santos, Luis
contents Dipolar Bose-Einstein condensates are excellent platforms for studying supersolidity, characterized by coexisting density modulation and superfluidity. The realization of dipolar mixtures opens intriguing new scenarios, most remarkably the possibility of realizing a double supersolid, composed by two interacting superfluids. We analyze the complex excitation spectrum of a miscible trapped dipolar Bose mixture, showing that it provides key insights about the double supersolid regime. We show that this regime may be readily probed experimentally by monitoring the appearance of a doublet of superfluid compressional modes, linked to the different superfluid character of each component. Additionally, the dipolar supersolid mixture exhibits a non-trivial spin nature of the dipolar rotons, the Higgs excitation, and the low-lying Goldstone modes. Interestingly, the analysis of the lowest-lying modes allows for monitoring the transition of just one of the components into the incoherent droplet regime, whereas the other remains coherent, highlighting their disparate superfluid properties.
format Preprint
id arxiv_https___arxiv_org_abs_2412_05215
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Excitation spectrum of a double supersolid in a trapped dipolar Bose mixture
Scheiermann, Daniel
Gallemí, Albert
Santos, Luis
Quantum Gases
Dipolar Bose-Einstein condensates are excellent platforms for studying supersolidity, characterized by coexisting density modulation and superfluidity. The realization of dipolar mixtures opens intriguing new scenarios, most remarkably the possibility of realizing a double supersolid, composed by two interacting superfluids. We analyze the complex excitation spectrum of a miscible trapped dipolar Bose mixture, showing that it provides key insights about the double supersolid regime. We show that this regime may be readily probed experimentally by monitoring the appearance of a doublet of superfluid compressional modes, linked to the different superfluid character of each component. Additionally, the dipolar supersolid mixture exhibits a non-trivial spin nature of the dipolar rotons, the Higgs excitation, and the low-lying Goldstone modes. Interestingly, the analysis of the lowest-lying modes allows for monitoring the transition of just one of the components into the incoherent droplet regime, whereas the other remains coherent, highlighting their disparate superfluid properties.
title Excitation spectrum of a double supersolid in a trapped dipolar Bose mixture
topic Quantum Gases
url https://arxiv.org/abs/2412.05215