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Experimental certification of millions of genuinely entangled atoms in a solid

机译:固体中数百万个真正纠缠原子的实验证明

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摘要

Quantum theory predicts that entanglement can also persist in macroscopic physical systems, albeit difficulties to demonstrate it experimentally remain. Recently, significant progress has been achieved and genuine entanglement between up to 2900 atoms was reported. Here, we demonstrate 16 million genuinely entangled atoms in a solid-state quantum memory prepared by the heralded absorption of a single photon. We develop an entanglement witness for quantifying the number of genuinely entangled particles based on the collective effect of directed emission combined with the non-classical nature of the emitted light. The method is applicable to a wide range of physical systems and is effective even in situations with significant losses. Our results clarify the role of multipartite entanglement in ensemble-based quantum memories and demonstrate the accessibility to certain classes of multipartite entanglement with limited experimental control.
机译:量子理论预测,纠缠也可以在宏观物理系统中持续存在,尽管难以通过实验证明它仍然存在。最近,已经取得了重大进展,据报道,多达2900个原子之间确实发生了纠缠。在这里,我们演示了由单个光子的预热吸收制备的固态量子存储器中的1600万个真正纠缠的原子。我们开发了一个纠缠证人,用于根据定向发射的集体效应与所发射光的非经典性质来量化真正纠缠的粒子的数量。该方法适用于各种物理系统,即使在损失巨大的情况下也有效。我们的结果阐明了多团纠缠在基于集合体的量子存储器中的作用,并证明了在有限的实验控制下可访问某些类的多团纠缠。

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