论文标题

辐射中的幽灵:黑洞内部的强大编码

The ghost in the radiation: Robust encodings of the black hole interior

论文作者

Kim, Isaac H., Tang, Eugene, Preskill, John

论文摘要

我们重新考虑黑洞防火墙难题,强调量子误差纠正,计算复杂性和伪随身界面是理解黑洞内部的关键概念。我们假设由旧黑洞发出的鹰辐射是伪随机,这意味着仅由仅作用在辐射上的任何有效的量子计算与完全热状态区分开。然后,我们推断出辐射系统的子空间的存在,我们将其解释为黑洞内部的编码。这种编码的内部与旧的黑洞发出的晚发鹰量子纠缠在一起,并且无法与黑洞外面的计算有限观察者接触。具体而言,有效作用于辐射上的操作,那些在其余黑洞的熵中具有量子计算复杂性多项式的操作,并用作用于编码内部的一组完整的逻辑操作员通勤,直到熵在熵中呈指数较小的校正。因此,在我们的伪随身假设下,只要剩下的黑洞是宏观的,黑洞内部就可以很好地保护外部观察者。另一方面,如果辐射不是伪随机,则外部观察者可以通过将多项式时间量子计算应用于辐射来创建防火墙。

We reconsider the black hole firewall puzzle, emphasizing that quantum error-correction, computational complexity, and pseudorandomness are crucial concepts for understanding the black hole interior. We assume that the Hawking radiation emitted by an old black hole is pseudorandom, meaning that it cannot be distinguished from a perfectly thermal state by any efficient quantum computation acting on the radiation alone. We then infer the existence of a subspace of the radiation system which we interpret as an encoding of the black hole interior. This encoded interior is entangled with the late outgoing Hawking quanta emitted by the old black hole, and is inaccessible to computationally bounded observers who are outside the black hole. Specifically, efficient operations acting on the radiation, those with quantum computational complexity polynomial in the entropy of the remaining black hole, commute with a complete set of logical operators acting on the encoded interior, up to corrections which are exponentially small in the entropy. Thus, under our pseudorandomness assumption, the black hole interior is well protected from exterior observers as long as the remaining black hole is macroscopic. On the other hand, if the radiation is not pseudorandom, an exterior observer may be able to create a firewall by applying a polynomial-time quantum computation to the radiation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源