López-Saldívar Julio A, Castaños Octavio, Man'ko Margarita A, Man'ko Vladimir I
Instituto de Ciencias Nucleares, Universidad Nacional Autónoma de México, Apdo. Postal 70-543, Ciudad de México 04510, Mexico.
Moscow Institute of Physics and Technology, State University, Institutskii Per. 9, Dolgoprudnyi, Moscow 141700, Russia.
Entropy (Basel). 2019 Jul 27;21(8):736. doi: 10.3390/e21080736.
The evolution of an open system is usually associated with the interaction of the system with an environment. A new method to study the open-type system evolution of a qubit (two-level atom) state is established. This evolution is determined by a unitary transformation applied to the qutrit (three-level atom) state, which defines the qubit subsystems. This procedure can be used to obtain different qubit quantum channels employing unitary transformations into the qutrit system. In particular, we study the phase damping and spontaneous-emission quantum channels. In addition, we mention a proposal for quasiunitary transforms of qubits, in view of the unitary transform of the total qutrit system. The experimental realization is also addressed. The probability representation of the evolution and its information-entropic characteristics are considered.
开放系统的演化通常与该系统和环境之间的相互作用相关联。建立了一种研究量子比特(二能级原子)态的开放型系统演化的新方法。这种演化由应用于量子三态(三能级原子)态的酉变换决定,该变换定义了量子比特子系统。此过程可用于通过对量子三态系统进行酉变换来获得不同的量子比特量子通道。特别地,我们研究了相位阻尼和自发辐射量子通道。此外,鉴于整个量子三态系统的酉变换,我们提到了一种关于量子比特的准酉变换的提议。还讨论了实验实现。考虑了演化的概率表示及其信息熵特性。