Hoang Thai M, Bharath Hebbe M, Boguslawski Matthew J, Anquez Martin, Robbins Bryce A, Chapman Michael S
School of Physics, Georgia Institute of Technology, Atlanta, GA 30332-0430.
School of Physics, Georgia Institute of Technology, Atlanta, GA 30332-0430
Proc Natl Acad Sci U S A. 2016 Aug 23;113(34):9475-9. doi: 10.1073/pnas.1600267113. Epub 2016 Aug 8.
Spontaneous symmetry breaking occurs in a physical system whenever the ground state does not share the symmetry of the underlying theory, e.g., the Hamiltonian. This mechanism gives rise to massless Nambu-Goldstone modes and massive Anderson-Higgs modes. These modes provide a fundamental understanding of matter in the Universe and appear as collective phase or amplitude excitations of an order parameter in a many-body system. The amplitude excitation plays a crucial role in determining the critical exponents governing universal nonequilibrium dynamics in the Kibble-Zurek mechanism (KZM). Here, we characterize the amplitude excitations in a spin-1 condensate and measure the energy gap for different phases of the quantum phase transition. At the quantum critical point of the transition, finite-size effects lead to a nonzero gap. Our measurements are consistent with this prediction, and furthermore, we demonstrate an adiabatic quench through the phase transition, which is forbidden at the mean field level. This work paves the way toward generating entanglement through an adiabatic phase transition.
只要基态不具有基础理论(例如哈密顿量)的对称性,物理系统中就会发生自发对称性破缺。这种机制会产生无质量的南布-戈德斯通模式和有质量的安德森-希格斯模式。这些模式为理解宇宙中的物质提供了基础,并表现为多体系统中序参量的集体相位或幅度激发。幅度激发在确定基布尔-祖雷克机制(KZM)中控制普遍非平衡动力学的临界指数时起着关键作用。在此,我们表征了自旋-1凝聚体中的幅度激发,并测量了量子相变不同相的能隙。在相变的量子临界点,有限尺寸效应导致能隙不为零。我们的测量结果与这一预测相符,此外,我们展示了通过相变的绝热猝灭,这在平均场水平是被禁止的。这项工作为通过绝热相变产生纠缠铺平了道路。