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Parametric Symmetry Breaking in a Nonlinear Resonator

机译:非线性谐振器中的参数对称性破坏

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Much of the physical world around us can be described in terms of harmonic oscillators in thermodynamic equilibrium. At the same time, the far-from-equilibrium behavior of oscillators is important in many aspects of modern physics. Here, we investigate a resonating system subject to a fundamental interplay between intrinsic nonlinearities and a combination of several driving forces. We have constructed a controllable and robust realization of such a system using a macroscopic doubly clamped string. We experimentally observe a hitherto unseen double hysteresis in both the amplitude and the phase of the resonator's response function and present a theoretical model that is in excellent agreement with the experiment. Our work unveils that the double hysteresis is a manifestation of an out-of-equilibrium symmetry breaking between parametric phase states. Such a fundamental phenomenon, in the most ubiquitous building block of nature, paves the way for the investigation of new dynamical phases of matter in parametrically driven many-body systems and motivates applications ranging from ultrasensitive force detection to low-energy computing memory units.
机译:我们周围的许多物理世界都可以用热力学平衡中的谐波振荡器来描述。同时,振荡器的远非平衡行为在现代物理学的许多方面都很重要。在这里,我们研究一个共振系统,该共振系统受固有非线性和多个驱动力的组合之间的基本相互作用的影响。我们已经使用宏观双夹弦构造了这种系统的可控且可靠的实现。我们在实验上观察到了迄今为​​止从未见过的谐振器响应函数的幅度和相位上的双重磁滞现象,并提出了与实验非常吻合的理论模型。我们的工作揭示了双重磁滞现象是参数相态之间不平衡对称性破坏的体现。这种基本现象,在自然界中最普遍的构造块中,为研究参数驱动的多体系统中新的动力学阶段铺平了道路,并推动了从超灵敏力检测到低能耗计算存储单元的各种应用。

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  • 来源
    《Physical review letters 》 |2016年第21期| 214101.1-214101.5| 共5页
  • 作者单位

    Swiss Fed Inst Technol, Inst Solid State Phys, CH-8093 Zurich, Switzerland;

    Swiss Fed Inst Technol, Inst Theoret Phys, CH-8093 Zurich, Switzerland;

    Swiss Fed Inst Technol, Inst Theoret Phys, CH-8093 Zurich, Switzerland;

    Swiss Fed Inst Technol, Inst Solid State Phys, CH-8093 Zurich, Switzerland;

    Swiss Fed Inst Technol, Inst Theoret Phys, CH-8093 Zurich, Switzerland;

    Swiss Fed Inst Technol, Inst Solid State Phys, CH-8093 Zurich, Switzerland;

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