论文标题
重力纠缠和非质量量子系统内部能量的质量贡献
Gravitational entanglement and the mass contribution of internal energy in nonrelativistic quantum systems
论文作者
论文摘要
最近,从基本的角度和作为重力量化的测试案例,通过牛顿重力相互作用对远程量子颗粒的纠缠增加了兴趣。同样,也讨论了复合量子量子系统中的牛顿后引力效应,其中内部能量有助于质量,从而将质量促进了希尔伯特太空运营商。使用先前考虑的思想实验的修改版本,可以证明,两种概念在结合在一起时会导致不一致,从而加强了对从第一原理中重力使量子物质的非率级限制的严格推导的参数。
Recently, interest has increased in the entanglement of remote quantum particles through the Newtonian gravitational interaction, both from a fundamental perspective and as a test case for the quantization of gravity. Likewise, post-Newtonian gravitational effects in composite nonrelativistic quantum systems have been discussed, where the internal energy contributes to the mass, promoting the mass to a Hilbert space operator. Employing a modified version of a previously considered thought experiment, it can be shown that both concepts, when combined, result in inconsistencies, reinforcing the arguments for the necessity of a rigorous derivation of the nonrelativistic limit of gravitating quantum matter from first principles.