论文标题

时空 - 燃气环向桌面量子重力实验

Spacetime-emergent ring toward tabletop quantum gravity experiments

论文作者

Hashimoto, Koji, Takeda, Daichi, Tanaka, Koichiro, Yonezawa, Shingo

论文摘要

我们提出了一种在桌面实验中发现的一种方法,即时空燃料材料,即在ADS/CFT对应关系下,在较高维度的材料二重性对较高维量子重力系统上。全息时空的出现通过材料上响应函数的数学成像变换来验证。我们在1维环形材料上考虑理论,并计算对局部放置在环上的标量源的响应。当材料上的理论具有重力双重时,低温相中的成像与普通材料显示出明显的差异:时空凝胶材料可以看一下全息呈现的高度较高较高维的弯曲时空,并提供图像,就像在那里传播波浪一样。因此,图像是时空出现的实验签名。我们还估计了在实验中可用的温度,环大小和源频率,其中量子临界材料tlcucl $ _3 $。

We propose a way to discover, in tabletop experiments, spacetime-emergent materials, that is, materials holographically dual to higher-dimensional quantum gravity systems under the AdS/CFT correspondence. The emergence of the holographic spacetime is verified by a mathematical imaging transform of the response function on the material. We consider theories on a 1-dimensional ring-shaped material, and compute the response to a scalar source locally put at a point on the ring. When the theory on the material has a gravity dual, the imaging in the low temperature phase exhibits a distinct difference from the ordinary materials: the spacetime-emergent material can look into the holographically emergent higher-dimensional curved spacetime and provides an image as if a wave had propagated there. Therefore the image is an experimental signature of the spacetime emergence. We also estimate temperature, ring size and source frequency usable in experiments, with an example of a quantum critical material, TlCuCl$_3$.

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