论文标题
探测Lorentz-Invariance-侵犯在准二维二极化的二极化二极化的诱导的非热INRUH效应
Probing Lorentz-Invariance-Violation Induced Nonthermal Unruh Effect in Quasi-Two-Dimensional Dipolar Condensates
论文作者
论文摘要
iNRUH效应在穿过Minkowski真空时呈现一个加速的粒子检测器对热响应的注册,并且认为其热特征与Lorentz对称性是不可分割的:没有后者,前者消失了。在这里,我们建议在准二维的bose-Einstein冷凝物(BEC)中使用杂质原子观察模拟循环临床效应(BEC),在超感气中原子或分子之间具有显着的偶极 - 偶极相互作用。冷凝物中的量子波动具有Bogoliubov Spectrum $ω_ {\ MathBf K} = C_0 | {\ Mathbf K} | F(\ Hbar \,C_0 | {\ Mathbf K} $ m_ \ ast $,杂质充当其有效的unuh-dewitt检测器。当检测器传播接近声速时,在我们的量子流体平台中观察到的INRUH效应在实验上是可行的。特别是,通过偶性和接触相互作用的相对强度,Bogoliubov光谱与Lorentz-Invariant情况的偏差是高度可加入的,因此提供了一个可行的实验室工具,以实验研究UNRUH的热特征是否具有鲁棒s象征性破坏的unruh效果。
The Unruh effect states an accelerated particle detector registers a thermal response when moving through the Minkowski vacuum, and its thermal feature is believed to be inseparable from Lorentz symmetry: Without the latter, the former disappears. Here we propose to observe analogue circular Unruh effect using an impurity atom in a quasi-two-dimensional Bose-Einstein condensate (BEC) with dominant dipole-dipole interactions between atoms or molecules in the ultracold gas. Quantum fluctuations in the condensate possess a Bogoliubov spectrum $ω_{\mathbf k}=c_0|{\mathbf k}|f(\hbar\,c_0|{\mathbf k}|/M_\ast)$, working as an analogue Lorentz-violating quantum field with the Lorentz-breaking scale $M_\ast$, and the impurity acts as an effective Unruh-DeWitt detector thereof. When the detector travels close to the sound speed, observation of the Unruh effect in our quantum fluid platform becomes experimentally feasible. In particular, the deviation of the Bogoliubov spectrum from the Lorentz-invariant case is highly engineerable through the relative strength of the dipolar and contact interactions, and thus a viable laboratory tool is furnished to experimentally investigate whether the thermal characteristic of Unruh effect is robust to the breaking of Lorentz symmetry.