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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quantum gate for Q switching in monolithic photonic-band-gap cavities containing two-level atoms
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Quantum gate for Q switching in monolithic photonic-band-gap cavities containing two-level atoms

机译:用于包含两级原子的单片光子带隙腔中Q切换的量子门

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Photonic-band-gap cavities are prime solid-state systems to investigate light-matter interactions in the strong coupling regime. However, as the cavity is defined by the geometry of the periodic dielectric pattern, cavity control in a monolithic structure can be problematic. Thus, either the state coherence is limited by the read-out channel, or in a high-Q cavity, it is nearly decoupled from the external world, making measurement of the state extremely challenging. We present here a method for ameliorating these difficulties by using a coupled cavity arrangement, where one cavity acts as a switch for the other cavity, tuned by control of the atomic transition.
机译:光子带隙腔是主要的固态系统,用于研究强耦合状态下的光-质相互作用。但是,由于空腔是由周期性电介质图案的几何形状限定的,所以在单片结构中的空腔控制可能会成问题。因此,状态相干性受读出通道的限制,或者在高Q腔中,它几乎与外界分离,从而使状态的测量极具挑战性。我们在这里提出一种通过使用耦合腔布置来缓解这些困难的方法,其中一个腔充当另一腔的开关,通过控制原子跃迁来调节。

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