量子纠缠
物理
量子力学
角动量
光子
量子态
纠缠证人
量子隐形传态
W州
压扁的纠缠
可分离态
角动量耦合
总角动量
量子不和谐
光子纠缠
量子
方位量子数
经典力学
量子信道
作者
Alois Mair,Alipasha Vaziri,Gregor Weihs,Anton Zeilinger
出处
期刊:Nature
[Springer Nature]
日期:2001-07-01
卷期号:412 (6844): 313-316
被引量:3153
摘要
Entangled quantum states are not separable, regardless of the spatial separation of their components. This is a manifestation of an aspect of quantum mechanics known as quantum non-locality. An important consequence of this is that the measurement of the state of one particle in a two-particle entangled state defines the state of the second particle instantaneously, whereas neither particle possesses its own well-defined state before the measurement. Experimental realizations of entanglement have hitherto been restricted to two-state quantum systems, involving, for example, the two orthogonal polarization states of photons. Here we demonstrate entanglement involving the spatial modes of the electromagnetic field carrying orbital angular momentum. As these modes can be used to define an infinitely dimensional discrete Hilbert space, this approach provides a practical route to entanglement that involves many orthogonal quantum states, rather than just two Multi-dimensional entangled states could be of considerable importance in the field of quantum information, enabling, for example, more efficient use of communication channels in quantum cryptography.
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