• Nowhere is this more evident than in the field of quantum information.

    没有其他的领域能比量子信息学更明显地表明这一点了。

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  • Quantum information and computing now is the hot research field of physics.

    量子信息与计算是物理学目前研究的热门领域。

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  • Currently, quantum information is transmitted by connecting, or entangling, qubits.

    目前,量子信息是通过链接或者卷入量子位来传输。

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  • One of the important tasks in quantum information is the transmission and transfer.

    量子信息过程中的一个重要环节就是量子信息的传递和转换。

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  • Quantum entanglement is the most fundamental resource of quantum information science.

    量子纠缠是量子信息科学最基本的资源。

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  • Quantum information theory is the combination of classical information theory and quantum mechanics.

    量子信息论是经典信息论与量子力学相结合的新兴交叉学科。

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  • As a subject of quantum information science, quantum communication has been researched for many years.

    量子通信是量子信息学中研究较早的领域。

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  • The quantum pure slates and mixed states are the most important quantum states in quantum information.

    量子纯态和混合态是量子信息中最重要的两种量子状态。

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  • We propose a relatively robust scheme to implement quantum information transfer via adiabatic passage.

    提出一种利用绝热过程实现量子信息转移的方案。

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  • In contrast to quantum communication, quantum computing is also the focus of quantum information science.

    与量子通信相对应地,量子计算目前也是量子信息科学的重点研究对象。

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  • The expression of fidelity of quantum information in J-C model with many-photon transition was written out.

    并给出了有任意光子跃迁的J - C模型中量子信息保真度的表达式。

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  • On the other hand, quantum decoherence is one of the key obstacles in the applications of quantum information.

    另一方面,量子退相干是量子信息领域走向实际应用的重要障碍之一。

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  • In a word, the birth of quantum information science brings new activity into the future information science and technology.

    总之,量子信息科学的诞生,为未来的信息科学和技术注入了新的活力。

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  • Owing to the important role of single photon in quantum information process, the technique of generating single photon is developing.

    由于单光子在量子信息科学中的重要作用,人们一直在探索实验制备单光子的技术。

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  • Combining the‘‘quantumness’’ of light and matter in such experiments also leads to promising advances in the processing of quantum information.

    在这样的实验中结合光的量子性能够仔细研究有关量子力学的信息。

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  • Quantum information is the use of quantum physics principles and properties of classical information to represent and manipulate information.

    量子信息利用量子力学的基本原理结合经典信息的性质对信息进行表示和处理。

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  • It is significant to study the quantum entanglement quantitatively and qualitatively and its application in the field of quantum information.

    因此对量子纠缠的定性和定量的研究以及在量子信息领域可能的应用的研究将是非常有意义的。

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  • Quantum theory is used to study the fidelity of quantum information of binomial light field interacting with pair atoms of entanglement state.

    应用全量子理论研究了初始处于纠缠态双原子与二项式光场共振相互作用的光场量子信息保真度。

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  • It is important to generate high quality photon pairs in the highly nonlinear optical fiber for practical applications of quantum information.

    在高非线性光纤中产生高质量的光子对对于量子信息的应用具有重要意义。

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  • In order to understand the quantum information processing in QKD system, complete quantum mechanics method was employed to describe QKD system.

    因为QKD系统是对单量子态的操作,因此QKD系统本质上是量子力学系统。

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  • Lately, with the vigorous development of quantum information, quantum entanglement states has been widely applied in each field of quantum information.

    近年来,随着量子信息的蓬勃发展,量子纠缠态已被广泛应用到量子信息的各个领域。

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  • In recent years, the preparation of continuous variable entanglement has attracted a lot of attention in quantum optics and quantum information process.

    近年来有关连续变量纠缠态的制备及其在量子信息处理中的应用引起了人们广泛的关注。

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  • Realizing the teleportation of a quantum state, specially the teleportation of a many-qubit quantum state, is of great importance in quantum information.

    实现量子态的隐形传送,尤其是多比特量子态的隐形传送在量子信息领域中有非常重要的作用。

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  • Part of that effort comes by bumping up, one by one, the number of quantum bits or "qubits" - units of quantum information - that can be brought under control.

    研究者们旨在探索次原子粒子变成这种状态的方式。 他们的部分尝试是一个一个地去碰可以控制的原子(量子信息的单位)的数量。

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  • We introduce some important matrices and their applications in quantum computation and quantum information, including density matrix, unitary matrix, etc.

    介绍了量子计算与量子信息中的一些重要的矩阵及其应用,包括密度矩阵、酉矩阵等。

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  • We present a scheme for transferring quantum information, which is based on the nonresonant interaction of two two_level atoms with a single_mode cavity field.

    提出了一种量子信息转移方案,它是基于两个耦合的二能级原子同时与单模腔场发生大失谐相互作用实现的。

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  • Quantum communication is an important branch of quantum information, embracing quantum teleportation, quantum dense coding, quantum key distribution and so on.

    量子通信是量子信息学的一个重要分支,主要包括量子隐形传态、量子稠密编码、量子秘钥分配等。

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  • We have discussed quantum coherence and classical coherence. The applications of quantum coherence in quantum computation and quantum information are introduced.

    对经典相干和量子相干进行了探讨,介绍量子相干在量子计算和量子信息中的应用。

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  • In search of a more stable way to store quantum information, Awschalom has now figured out how to link the spin of a electron to the spin of the nearby nitrogen's nucleus.

    为了寻找更稳定的方法来储存量子信息,Awschalom已经计算出一个电子的旋转与附近氮原子核旋转的的联系。

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  • It builds the photon link between sender and receiver of quantum communication network, and provides quantum channel for transferring quantum information between them.

    它在量子通信网络的发信者与收信者之间建立光子链路,为通信双方提供量子信道,用于传输量子信息。

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