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Experimental entanglement of four particles

机译:四个粒子的实验纠缠

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Quantum mechanics allows for many-particle wavefunctions that cannot be factorized into a product of single-particle wave-functions, even when the constituent particles are entirely distinct. Such 'entangled' states explicitly demonstrate the non-local character of quantum theory, having potential applications in high-precision spectroscopy, quantum communication, cryptography and computation. In general, the more particles that can be entangled, the more clearly nonclassical effects are exhibited-and the more useful the states are for quantum applications. Here we implement a recently proposed entanglement technique to generate entangled states of two and four trapped ions. Coupling between the ions is provided through their collective motional degrees of freedom, but actual motional excitation is minimized. Entanglement is achieved using a single laser pulse, and the method can in principle be applied to any number of ions.
机译:量子力学允许许多粒子的波函数不能被分解为单粒子波函数的乘积,即使组成粒子是完全不同的。这种“纠缠”状态清楚地证明了量子理论的非局部特性,在高精度光谱学,量子通信,密码学和计算中具有潜在的应用。通常,可以纠缠的粒子越多,表现出的非经典效应就越明显-态对量子应用的作用就越大。在这里,我们实现了最近提出的纠缠技术,以生成两个和四个捕获离子的纠缠态。离子之间的耦合通过它们的集体运动自由度提供,但是实际的运动激发被最小化了。使用单个激光脉冲即可实现纠缠,并且该方法原则上可以应用于任何数量的离子。

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