论文标题
近距离局部不稳定性和量子热力
Near horizon local instability and quantum thermality
论文作者
论文摘要
我们重新审视了以前提出的猜想 - 地平线创造了局部不稳定性,它充当黑洞的量子温度来源。发现沿着爱丁顿 - 弗基尔斯坦(EF)坐标的无电质量粒子沿着空的轨迹移动,在地平线附近感觉到不稳定。对于这种粒子运动,这种不稳定性独立于观察者。此外,与EF坐标相关的观察者发现,当地的哈密顿量为$ xp $,其中$ p $是坐标$ x $的规范动量。最后,使用这种哈密顿量,我们注意到,在量子水平上,这类观察者感觉到地平线是由温度的热物体,由霍金表达给出。我们通过在量子力学中使用各种技术来提供此功能,从而增强了我们较早的主张 - 自动局部不稳定可以成为新兴视野作为热对象的机制。在此过程中,当前的分析还提供了另一套坐标(即EF帧),除了我们较早的painleve之外,其中无质量粒子的无轨迹由$ xp $ type hamiltonian在地平线方面的hamiltonian控制。
We revisit our previous proposed conjecture -- horizon creates a local instability which acts as the source of quantum temperature of black hole. It is found that a chargesless massless particle moving along the null trajectory in Eddington-Finkelstein (EF) coordinates feels instability in the vicinity of the horizon. Such instability is observer independent for this particle motion. Moreover, an observer associated to EF coordinates finds the local Hamiltonian as $xp$ where $p$ is the canonical momentum corresponding the coordinate $x$. Finally, using this Hamiltonian we notice that at the quantum level this class of observers feel the horizon as thermal object with temperature is given by the Hawking expression. We provide this by using various techniques in quantum mechanics and thereby bolstered our earlier claim -- the automatic local instability can be a mechanism for emerging horizon as a thermal object. In this process, the present analysis provides another set of coordinates (namely EF frame), in addition to our earlier Painleve ones, in which the null trajectory of the massless particle is governed by $xp$ type Hamiltonian in near the horizon regime.