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21.
ZHAN You-Bang 《理论物理通讯》2006,45(2):275-278
In this paper, two schemes for teleporting an unknown three-particle
three-level entangled state are proposed. In the first scheme, two partial three-particle three-level entangled states are used as the quantum
channels, while in the second scheme, three two-particle three-level
non-maximally entangled states are employed as quantum channels. It is shown that the teleportation can be successfully realized with certain
probability, for both two schemes, if a receiver adopts some appropriate
unitary transformations. It is shown also that the successful probabilities
of these two schemes are different. 相似文献
22.
A scheme of teleporting a multi-particle state via W state is presented. The W class states serve as quantum channels. After the sender operates both Von Neumann measurements and Bell-state measurements and then inform the receiver her results, the receiver can reconstruct the original state by corresponding unitary transformation. The probability of successful teleportation is also obtained. Special example of
four-particle state is discussed in detail. 相似文献
23.
ZHENG Shi-Biao 《理论物理通讯》2006,45(3):429-432
A scheme is presented for the long-distance teleportation of an unknown
atomic state between two separated cavities. The scheme is based on the
Raman coupling and cavity decay. In the scheme, the effective atom-cavity
coupling strength is much smaller than the cavity decay rate and thus
cavities of high quality factor are unnecesssary. 相似文献
24.
A probabilistic teleportation scheme for atomic state via cavity QED [Phys. Rev. A 70 (2004) 054303] is revisited and accordingly some improvements are made. 相似文献
25.
YANG Zhen-Biao 《理论物理通讯》2006,46(10)
We have proposed an alternative scheme for teleportation of two-atom entangled state in cavity QED. It is based on the degenerate Raman interaction of a single-mode cavity field with a ∧-type three-level atom. The prominent feature of the scheme is that only one cavity is required, which is prior to the previous one. Moreover, the atoms need to be detected are reduced compared with the previous scheme. The experimental feasibility of the scheme is discussed.The scheme can easily be generalized for teleportation of N-atom GHZ entangled states. The number of the atoms needed to be detected does not increase as the number of the atoms in GHZ state increases. 相似文献
26.
We present a scheme for probabilistically teleporting an arbitrary unknown two-qubit state through a quantum channel made up of two nonidentical non-maximally entangled states. In this scheme, the probabilistic teleportation is realized by using a proper positive operator-valued measure instead of usual projective measurement. 相似文献
27.
28.
This paper presents a realistic scheme for the teleportation of
coherent states in which a two-mode squeezed vacuum state serves as
the quantum channel and the position-sum and momentum-difference of
two local modes serve as the measuring observables. The average
fidelity of the teleportation of coherent states is derived for
finite squeezing parameters and it turns out that fidelity greater
than 1/2 cannot be achieved by using a classical channel alone and
the probability distribution of the measurement result is a Gaussian
distribution around the unknown parameter of the input coherent
state with a width given by the squeezing parameter. 相似文献
29.
设计了一种基于压缩感知(compressive sensing, CS)技术的双向中继信道(two-way relay channels, TWRC)估计方法,并具体采用正交匹配追踪算法(orthogonal matching pursuit, OMP)对OFDM系统下的信道脉冲响应进行估计。双向中继信道往往呈现出稀疏多径结构,这种结构会随着信号空间维数的增大而越加明显。传统的线性估计方法没有考虑到TWRC的潜在稀疏性,因而导致了对关键通信资源的过度使用。而基于CS的TWRC估计方法能够很好地利用这种传输信道的稀疏多径结构,与传统线性估计方法相比,在获得同样估计性能的前提下,需要的训练序列长度大大减少,有效地提高了频谱、能量等资源利用率。同时,所采用的OMP算法的时间复杂度主要依赖于信道稀疏度,因此计算效率往往比传统的方法高。仿真也证实了基于CS的TWRC估计算法的优越性。 相似文献
30.
Recently Wei-Bo Gao et al. [Phys. Rev. Lett. 104 (2010) 020501]; reported on the creation of a 4-photon 6-qubit cluster state. It is shown this states can be utilized for perfect teleportation of arbitrary three qubit systems and controlled teleportation of an arbitrary two-qubit state. Therefore, the six-qubit cluster state as quantum channels is equivalent to that of maximally six-qubit entangled state. 相似文献