论文标题

通过耦合到超导电荷量子轴的挤压相干状态的叠加

Preparation of a superposition of squeezed coherent states of a cavity field via coupling to a superconducting charge qubit

论文作者

Freitas, Dagoberto S.

论文摘要

鉴于其在量子通信中的各种应用,在过去几年中的非经典状态的产生变得越来越重要。产生此类非经典状态的可行性已在多个物理分支中,例如腔电动力学,被困的离子,量子点,腔内原子等。从这个意义上讲,我们将讨论在微腔内超导量子的背景下生成非经典状态的问题。最近,已经提出了一种使用鱿鱼电荷坐标值在腔体内部具有可控制相互作用的量子量子的方法。这些量子状态的关键要素是可调门电压,是施加在鱿鱼上的经典磁场。一些模型在内,并使用一些适当的近似值,这些模型允许生成相互作用和非经典状态的线性化。由于已知破坏性会不间断地影响量子效应,即使形成量子状态,也有效的是可电工过程,因此,设想通过尽可能快地产生量子叠加的过程很有趣。在腔QED的背景下,已经研究和量化了变质效应,其中表明量子更多是叠加,而在创建量子状态的过程中,环境效应更快地发生。在后者的参考文献中,我们通过应用适当的统一转换和所涉及的一定值来成功使哈密顿素化线性化,我们表明可以获得特定的哈密顿人。在这项工作中,我们将使用这种方法来准备两个挤压相干状态的叠加。

The generation of nonclassical states of a radiation field has become increasingly important in the past years given its various applications in quantum communication. The feasibility of generating such nonclassical states has been established in several branches of physics such as cavity electrodynamics, trapped ions, quantum dots, atoms inside cavities and so on. In this sense, we will discuss the issue of the generation of nonclassical states in the context of a superconducting qubit in a microcavity. It has been recently proposed a way to engineer quantum states using a SQUID charge qubit inside a cavity with a controllable interaction between the cavity field and the charge qubit. The key ingredients to engineer these quantum states are a tunable gate voltage and a classical magnetic field applied to SQUID. Some models including these ingredients and using some appropriate approximations which allow for the linearization of the interaction and nonclassical states of the field were generated. Since decoherence is known to affect quantum effects uninterruptedly and decoherence process are works even when the quantum state is being formed, therefore, it is interesting to envisage processes through which quantum superpositions are generated as fast as possible. The decoherence effect has been studied and quantified in the context of cavity QED where it is shown that the more quantum is the superposition, more rapidly the environmental effects occur during the process of creating the quantum state. In the latter reference, we have succeeded in linearizing the Hamiltonian through the application of an appropriate unitary transformation and for certain values of the parameters involved, we have showed that it is possible to obtain specific Hamiltonians. In this work we will use such approach for preparing superposition of two squeezed coherent states.

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