共查询到20条相似文献,搜索用时 70 毫秒
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利用分束器通过条件测量制备非经典光场态和量子纠缠态 总被引:3,自引:0,他引:3
把相干态和单粒子数态作为分束器的输入态,通过条件测量可以剪去输入相干态中的任意粒子数态,并研究了这些被剪切了的光场态的性质。结果显示剪去真空态和单粒子数态的输出态具有较强的压缩和亚泊松分布等非经典效应。把剪切了的输出态和真空态输入分束器,得到的输出态具有量子纠缠性质,从而制备出量子纠缠态,同时也验证了被剪切的输出态的非经典性。 相似文献
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增加光子位移福克态的量子统计性质 总被引:2,自引:0,他引:2
引入了增加光子位移福克态 a+m| α,n〉,其中 | α,n〉是位移福克态,m是整数.用数值计算的方法研究了这种态的量子统计性质.结果表明,在位移福克态上增加光子后可以使原有的光场呈现较强的压缩,并能使光场的亚泊松特性得到明显增强. 相似文献
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考虑双模纠缠相干光场,在其中一束光场中注入一个二能级原子(处于基态和激发态线性叠加态),参与腔QED演化之后,对原子作选择性的测量,通过操纵参数的变化范围,可实现对光场非经典性质的控制。我们经过研究发现:如果对相互作用的时间t以及参与相互作用的相干光场的参数|β|实行一定的操纵,对于未参与相互作用的光场|α|,我们可以控制改变它的反聚束效应(光子数的亚泊松分布)、压缩效应等一系列的非经典性质,如果选取合适的参数和一定的演化时间,我们可以使原来的相干态光场变为反聚束光场、压缩光场等一系列非经典光场。也就是说,我们通过利用相干光场之间的纠缠关联实现了远程操纵光场的非经典性质这一目的。这一研究结果对于连续变量的量子控制和量子通信具有一定的实际应用价值。 相似文献
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相干态光场的位相统计性质 总被引:5,自引:0,他引:5
根据Pegg-Barnett位相定义,计算了相干态光场的位相概率分布函数,并且进行了数值模拟。研究表明在真空态时,位相分布曲线为一条直线;相干态下位相分布曲线表现为:均匀分布→泊松分布→均匀分布。 相似文献
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研究了双模最小关联混态在不同参数情况下的量子统计性质.发现在一定的参数范围内双模最小关联混态的二阶相干性违反经典的Cauchy-Schwartz不等式,呈现非经典性相关;同时对双模最小关联混态的压缩特性、亚泊松分布等非经典性质进行了分析,通过数值计算得出,每模光子的压缩性及其亚泊松分布均与参数d的取值密切相关. 相似文献
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采用时间演化算符和数值计算方法,研究了两全同二能级纠缠原子与相干态光场相互作用过程中光场的量子特性,结果表明:两原子初始纠缠度和相干态光场强度对系统光场的二阶相干性质和压缩效应有很大的影响. 相似文献
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研究了Kerr介质中相干态光场与耦合V型三能级原子相互作用过程中场的量子性质.利用量子光学中光场与原子相互作用的耦合Tavis-Cummings模型,对系统的动力学过程进行了求解.讨论了系统初始状态、失谐量、原子间偶极相互作用强度及Kerr系数对光场量子性质随时间演化的影响.数值计算结果表明:初态中场的平均光子数比较小时,光场能够展现出明显的量子效应|初始时刻原子激发态概率幅从小变大时,光场的反聚束效应变得越明显,而光场的压缩深度会先增大后减小|失谐量的变化对场的量子性质的影响不大,只是改变光场二阶相关函数和压缩参量振荡的周期|原子间耦合强度的增大使光场的反聚束效应减弱和光场的压缩深度变浅|Kerr系数的增大会增强光场的反聚束效应,而使光场的压缩深度变浅. 相似文献
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研究了Kerr介质中相干态光场与耦合V型三能级原子相互作用过程中场的量子性质.利用量子光学中光场与原子相互作用的耦合Tavis-Cummings模型,对系统的动力学过程进行了求解.讨论了系统初始状态、失谐量、原子间偶极相互作用强度及Kerr系数对光场量子性质随时间演化的影响.数值计算结果表明:初态中场的平均光子数比较小... 相似文献
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在理论和实验上研究了光学参量振荡中产生的弱压缩真空场的光子统计行为. 弱压缩真空具有强烈的光子聚束效应,这种比热光场更强的聚束效应在量子光学和量子测量中具有重要的应用. 利用远离阈值的光学参量振荡(optical parametric oscillator, OPO )过程,在实验上产生了该弱压缩真空输出,运转波长在铯原子线附近. 通过Hanbury-Brown-Twiss(HBT)测量了OPO输出光场的二阶关联函数,实验结果与理论分析基本一致.
关键词:
压缩真空态
二阶相干度
光学参量振荡 相似文献
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JIANG DaoLai REN XueZao CONG HongLu & LI Lei School of Science Southwest University of Science Technology Mianyang China 《中国科学:物理学 力学 天文学(英文版)》2010,(5)
By the method of coherent-state orthogonalization expansion,the atomic inversion and the anti-bunching effect in a two-level atomic system interacting with binomial state field are studied under the Jaynes-Cummings model without rotating wave approximation.The influence of the parameter and the detuning on the anti-bunching effect are discussed,and the anti-bunching effect is also discussed under the conditions of strong coupling.Our studies show that the second order coherence degrees are quite different b... 相似文献
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By analyzing theoretical scheme of quantum controlling through photon addition,we propose a new optical field whose density operator asρ=λ(1-λ)l:Ll(-λ2aa/1-λ)e-λaa:(here::denotes normal ordering symbol),which is named Laguerre-polynomialweighted chaotic state.We show that such state is the solution to the master equation d/dtρ=-κ(aaρ+ρaa-aρa-aρa),describing a diffusion channel,with the initial number state|l l|,andλ=1/(1+κt).This new state is characteristic of possessing photon number l+κt at time t,so the photon number by adjusting the diffusion parameterκcan be controlled.This master equation is solved using the summation method within ordered product of operators and the entangled state representation.The physical difference between the diffusion and the amplitude damping is noted. 相似文献
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JIAO Zhi-Yong MA Jun-Mao SHANG Yong-Tao LI Ning FU Xia 《理论物理通讯》2008,50(10):971-973
Quantum statistical properties of the binomial field interacting with the two entangled atoms are investigated for the different initial conditions. It is found that the sub-Poissonian distribution and the antibunching effect can be presented for the certain ranges of the involved parameters. 相似文献
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This paper studies the interaction of a Λ-type three-level
atom with a single mode field. It discusses the emission spectrum
characteristics of the Λ -type three-level atom driven by
the photon-added coherent field. By means of the second-order degree
of coherence, it shows some nonclassical properties of the cavity
field, such as sub-Poissonian photon-number distribution and the
two-time intensity--intensity correlation which violates the
Cauchy--Schwarz inequality. 相似文献
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In this paper, we propose a class of the generalized photon-added coherent states (GPACSs) obtained by repeatedly operating the combination of Bosonic creation and annihilation operatoes on the coherent state. The normalization factor of GPACS is related to Hermite polynomial. We also derive the explicit expressions of its statistical properties such as photocount distribution, Wigner function and tomogram and investigate their behaviour as the photon-added number varies graphically. It is found that GPACS is a kind of nonclassical state since Wigner function exhibits the negativity by increasing the photon-added number. 相似文献
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Entanglement properties between two atoms in the binomial optical field interacting with two entangled atoms 下载免费PDF全文
The temporal evolution of the degree of entanglement between two atoms in a system of the binomial optical field interacting with two arbitrary entangled atoms is investigated. The influence of the strength of the dipole–dipole interaction between two atoms, probabilities of the Bernoulli trial, and particle number of the binomial optical field on the temporal evolution of the atomic entanglement are discussed. The result shows that the two atoms are always in the entanglement state. Moreover, if and only if the two atoms are initially in the maximally entangled state, the entanglement evolution is not affected by the parameters, and the degree of entanglement is always kept as 1. 相似文献
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Using the density matrix method, the linear optical properties of truncated pyramid quantum dots have been investigated when an additional coupling field is introduced. The absorption coefficients and refractive index changes are strongly affected by the amplitude of the coupling field and the phase difference between the probe and coupling fields. The numerical results indicate that negative absorption and transparency can be obtained when both of the probe and coupling fields are in resonance with the quantum dots. 相似文献