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APS -APS March Meeting 2017 - Event - Digital-analog quantum simulation of generalized Dicke models with superconducting circuits

机译:APS -APS 3月会议2017 - 具有超导电路的广义Dicke型号的事件 - 数模量模拟

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We propose a digital-analog quantum simulation of generalized Dicke models with superconducting circuits, including Fermi-Bose condensates, biased and pulsed Dicke models, for all regimes of light-matter coupling. We encode these classes of problems in a set of superconducting qubits coupled with a bosonic mode implemented by a transmission line resonator. Via digital-analog techniques, an efficient quantum simulation can be performed in state-of-the-art circuit quantum electrodynamics platforms, by suitable decomposition into analog qubit-bosonic blocks and collective single-qubit pulses through digital steps. Moreover, just a single global analog block would be needed during the whole protocol in most of the cases, superimposed with fast periodic pulses to rotate and detune the qubits. Therefore, a large number of digital steps may be attained with this approach, providing a reduced digital error. Additionally, the number of gates per digital step does not grow with the number of qubits, rendering the simulation efficient. This strategy paves the way for the scalable digital-analog quantum simulation of many-body dynamics involving bosonic modes and spin degrees of freedom with superconducting circuits.
机译:我们提出了一种具有超导电路的广义DICKE模型的数字 - 模拟量子模拟,包括FERMI-BOSE凝聚物,偏置和脉冲DICKE模型,用于所有浅滤波器耦合。我们在一组超导Qubits中对这些类别进行编码,其与由传输线谐振器实现的振荡模式耦合的。通过数模性的技术,可以通过数字步骤将高效的量子仿真在最先进的电路量子电动力学平台上进行,通过数字步骤将分数分解成模拟QUBit-Bosonic块和集体单反脉冲。此外,在大多数情况下,在整个协议中需要一个全局模拟块,叠加有快速周期性脉冲以旋转和刺激Qubits。因此,可以利用这种方法实现大量数字步骤,提供了减少的数字误差。另外,每个数字步骤的栅极数量不会随着Qubits的数量而增长,呈现仿真高效。该策略为可扩展的数字模拟量子仿真铺平了许多身体动态的可扩展性模拟量子仿真,涉及具有超导电路的旋转模式和自旋自由度的多体动力学。

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