Di Liberto M, Recati A, Trivedi N, Carusotto I, Menotti C
INO-CNR BEC Center and Dipartimento di Fisica, Università di Trento, 38123 Povo, Italy.
Arnold Sommerfeld Center for Theoretical Physics, Ludwig-Maximilians-Universität München, 80333 München, Germany.
Phys Rev Lett. 2018 Feb 16;120(7):073201. doi: 10.1103/PhysRevLett.120.073201.
We study the low-energy excitations of the Bose-Hubbard model in the strongly interacting superfluid phase using a Gutzwiller approach. We extract the single-particle and single-hole excitation amplitudes for each mode and report emergent mode-dependent particle-hole symmetry on specific arc-shaped lines in the phase diagram connecting the well-known Lorentz-invariant limits of the Bose-Hubbard model. By tracking the in-phase particle-hole symmetric oscillations of the order parameter, we provide an answer to the long-standing question about the fate of the pure amplitude Higgs mode away from the integer-density critical point. Furthermore, we point out that out-of-phase symmetric oscillations in the gapless Goldstone mode are responsible for a full suppression of the condensate density oscillations. Possible detection protocols are also discussed.
我们使用古兹维勒方法研究强相互作用超流相中玻色-哈伯德模型的低能激发。我们提取了每个模式的单粒子和单空穴激发振幅,并报告了在连接玻色-哈伯德模型著名的洛伦兹不变极限的相图中特定弧形线上出现的依赖于模式的粒子-空穴对称性。通过追踪序参量的同相粒子-空穴对称振荡,我们回答了关于远离整数密度临界点的纯振幅希格斯模式命运的长期问题。此外,我们指出无隙戈德斯通模式中的异相对称振荡导致凝聚密度振荡的完全抑制。还讨论了可能的检测方案。