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quantum teleportation造句

"quantum teleportation"是什么意思  
造句与例句手机版
  • Since then , quantum teleportation has developed rapidly
    从那以后,量子隐形传态有了快速的发展。
  • Entanglement translation and quantum teleportation of the single - photon entangled state
    单光子纠缠态的纠缠转移和量子隐形传态
  • The information can be decoded using the results of the measurement as the key [ see “ quantum teleportation , ” by anton zeilinger ; scientific american , april 2000 ]
    利用测量的结果当做钥匙,可用以将资讯解码(见延伸阅读3 ) 。
  • The principles of quantum teleportation : the information of original can be divided into classical information and quantum information
    量子隐形传态的基本思想为:为实现传送某一物体的未知量子态可将原物的信息分为经典信息和量子信息。
  • Note that quantum teleportation , originally proposed by bennett et al in 1993 , is one of the most strikingly interesting field in quantum communication
    其中,量子隐形传态是量子通信领域中最引人注目的方向之一,这一概念是由bennett等人在1993年最早提出的。
  • Quantum teleportation allows transmit an unknown quantum state from a sender , traditionally named alice , to receiver , or bob , both are spatially separated
    量子隐形传态可以从发送者(通常称为alice )处传输一个未知量子态给接收者(通常称为bob ) ,发送者和接收者是空间远离的。
  • Based on qutantum entanglement , quantum entanglement in the quantum communication has been profoundly discussed and approach of the exceed - velocity of light by quantum teleportation has been brought about
    在介绍量子纠缠特性的基础上,对量子隐形传态进行了探讨,提出了超光速量子通信的途径。
  • Quantum communication is a very important branch of quantum information . at present , it mainly contains quantum teleportation , quantum dense coding , quantum key distribution , and so on
    量子通信是量子信息学的一个非常重要的分支,目前主要涉及到量子隐形传态、量子密集编码、量子密钥分配等。
  • Quantum entropy theory is the foundation and powerful tool in understanding and studying such problems as quantum computation , quantum communication , quantum teleportation , quantum measurement and quantum entanglement
    它是理解和研究量子计算、量子通信、量子隐形传态、量子测量、量子纠缠等热点课题的理论基础和有力工具。
  • The quantum teleportation of continuous variables with two - mode squeezed vacuum states is reviewed . its importance and advantages relative to the quantum teleportation of discrete variables are discussed
    介绍了通过双模压缩真空态实现连续变量量子隐形传态的方法,并探讨了这一工作的重要意义及其相对于分离变量量子隐形传态的优越性
  • It's difficult to see quantum teleportation in a sentence. 用quantum teleportation造句挺难的
  • Second , in the field of the epr protocol , the fundamental principles of quantum teleportation of complex system based on epr pairs are reviewed , along with non - locality , bell basis testament and entanglement characteristics
    二、 epr量子密钥分配方面,研究了基于epr纠缠对的复合系统的量子隐形传态的基本原理,量子非局域关联性, bell基测量,纠缠的特性。
  • With the development of quantum information , entangled states are not only used to testify some basic quantum theories , but also used as a kind of efficient resource in quantum dense coding , quantum teleportation , and so on
    量子信息的不断发展使纠缠态不仅被用来验证量子力学的基本原理,人们还将量子纠缠作为一种有效的资源来进行量子密集编码,量子隐形传态等。
  • We briefly summarized the experimental generation scheme of the optical entangle states for continuous variables and their applications in quantum teleportation , quantum dense coding , controlled dense coding , entanglement swapping and quantum communication network
    扼要介绍连续变量纠缠态光场产生的实验方法,及其在量子离物传态,量子密集编码,受控密集编码,量子纠缠交换及量子通信网络中的应用
  • On the basis of principles of quantum teleportation , work that has been done in this thesis is as following : in practice , the entangled state used as quantum channel is always not a maximally entangled state because of interference of environment
    本论文基于量子信息中的量子隐形传态思想,开展了如下工作:由于热库引起的消纠缠问题的存在,在实际的量子隐形传态过程中,量子通道通常不易保持最大纠缠态。
  • Because classical information is indispensable to quantum teleportation and the transport speed of classical information does not exceed velocity of light , quantum teleportation does not violate quantum no - cloning theorem and principle of relativity
    由于经典信息对量子态的隐形传送必不可少,所以量子隐形传态不违背量子不可克隆定理。此外,经典信息传送速度不可能快于光速,因此量子隐形传态不违背相对论的光速最大原理。
  • This scheme is easily experimentally performed and is a effective avenue to realize the atomic squeezing ; in chapter 7 , a scheme for quantum teleportation of two - particle arbitrary pure two - levelstates is proposed , whose interpretation in terms of quantum information is given by using quantum entropy t
    该方案容易在实验上实现,是实现原子压缩的一条有效途径.第七章给出了如何对两个二能级粒子的任意纯态进行量子隐形传送,并用嫡理论对此作了解释
  • Utilizing entanglement , we can implement the disembodied transport of an unknown quantum state from one place to another remote place with high - fidelity , i . e . quantum teleportation . via entanglement , we can also improve the channel capacity of classical signal in quantum channel , i . e . quantum dense coding , even we can entangle two quantum systems that have never directly interacted with each other by means of entanglement swapping
    利用量子纠缠,通讯双方可以实现对一个量子态的高保真度远程传输,即量子离物传态;利用量子纠缠,通讯双方可以实现经典信息的高信道容量传输,即量子密集编码;甚至可以使原本不纠缠的量子系统产生纠缠,即纠缠交换。
  • On the other hand , because of the novel nature of quantum teleportation and the importance of the accessible information of quantun signal resource ensembles in quantum communication field , which provide a powerful tool and method for the proof of security of quantum key distribution , enhancing the research of this aspect has the important realistic meaning and practical value to the development of quantum information
    另一方面,量子隐态传输的神奇性质、量子信源可接收信息( accessibleinformation )在量子信息通信方面具有非常重要作用并为量子密钥分发的安全性证明提供了强有力的工具和手段,因此,加强这方面的研究对量子信息的发展具有重要的现实意义和实用价值。
  • In the last section , we show how entangled states are used in quantum dense coding , quantum cryptography and quantum teleportation . a new valuable scheme based on linear optical elements about teleportation of two - photon and multi - photon entangled states also has been proposed in this section . in this scheme t he probability of the successful teleportation is 50 % , which is optimal
    量子纠缠在量子信息中的应用这一章中,我们将首先分别介绍量子纠缠在量子密集编码,量子密钥分布,量子隐形传态中的应用,然后提出一种利用线性光学方法实现纠缠态的隐形传送方案,此方案的成功率为50 ,这也是目前为止最佳的成功几率。
  • Quantum information science is a new subject combining quantum theory and information science . great progress has been made in quantum teleportation , description of quantum entanglement and classification of quantum states . according to this , the following work has been completed : ( 1 ) a scheme for teleporting an unknown n - dimensionni - particle state by making use of the maximum entangled state as quantum channel is proposed
    量子信息学是量子力学理论和计算机理论相结合而产生的一门新的交叉学科,在量子隐形传态、量子纠缠态的描述及量子态的分类等领域取得了重要进展,本文围绕这几个方面开展了如下研究工作: ( 1 )在文章的第二章研究了多能级多粒子量子态的传输。
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