论文标题
量子重力证人通过质量纠缠:Casimir筛查
Quantum Gravity Witness via Entanglement of Masses: Casimir Screening
论文作者
论文摘要
最近提出的用于量子重力诱导的质量纠缠(QGEM)的实验方案需要原则上可实现的,但仍然非常雄心勃勃,在物质波干涉中的一组参数。通过缓解实验实现的动机,在本文中,我们考虑了稍微修改的实验设计所允许的参数空间,这通过将两个宏观的干涉仪通过薄导电板分开,从而降低了两个球形中性测试量之间的Casimir电位。尽管这种设置将在导电板和质量之间重新引入卡西米尔电位,但这种设计有几个优势。首先,量子重力诱导的两个超块之间的纠缠将没有Casimir背景。其次,要允许质量$ 10^{ - 16} -10} -10^{ - 15} $ kg和叠加尺寸$ΔX\ sim20μ$ m $ a $ 10^$ 10 $ 10^4 $ 10^4通过船尾 - 盖拉赫效应叠加。在这种情况下,我们将进一步研究由于导电板的振动模式而引起的碰撞解分解和破裂。
A recently proposed experimental protocol for Quantum Gravity induced Entanglement of Masses (QGEM) requires in principle realizable, but still very ambitious, set of parameters in matter-wave interferometry. Motivated by easing the experimental realization, in this paper, we consider the parameter space allowed by a slightly modified experimental design, which mitigates the Casimir potential between two spherical neutral test-masses by separating the two macroscopic interferometers by a thin conducting plate. Although this set-up will reintroduce a Casimir potential between the conducting plate and the masses, there are several advantages of this design. First, the quantum gravity induced entanglement between the two superposed masses will have no Casimir background. Secondly, the matter-wave interferometry itself will be greatly facilitated by allowing both the mass $10^{-16}-10^{-15}$kg and the superposition size $Δx \sim 20 μ$m to be a one-two order of magnitude smaller than those proposed earlier, and thereby also two orders of magnitude smaller magnetic field gradient of $10^4$Tm$^{-1}$ to create that superposition through the Stern-Gerlach effect. In this context, we will further investigate the collisional decoherences and decoherence due to vibrational modes of the conducting plate.