论文标题

用于旋转,充电和弦乐理论黑洞的量子计算

Quantum Computing for Rotating, Charged and String Theory Black Holes

论文作者

Chandra, Viti, McGuigan, Michael

论文摘要

旋转,充电,保姆和弦理论黑洞的量子力学由于其特殊的热力学特性以及其微晶格的神秘性而引起了人们的关注。对参与该系统的操作员的全面量子处理可以使其性质产生有价值的信息,类似于量子处理如何产生对原子,分子和基本颗粒的宝贵见解。我们使用量子计算研究了四种类型的黑洞,其中包括3D旋转Banados-teitelboim-Zanelli(BTZ)黑洞,4D带电的Reisner-Nordtrom(RN)黑洞,4D带电的Reisner-Nord-NordStrom -NordStrom -DE Sitter -DE Sitter(RN-DS)Black Hole(RN-DS)Black Hole和2D Purned Eunded Black Black Holes。在这些情况下,除了哈密顿量之外,还有一个质量操作员在描述黑洞的量子状态中起着重要作用。我们使用经典和量子计算计算这些运算符的频谱。对于量子计算,我们使用差异量子本素(VQE),该变量是在近期量子硬件上运行的混合经典量子算法。我们使用谐波振荡器和位置基础的4个量子位执行计算,以16 x 16矩阵实现黑洞的量子算子。对于4个Qubit情况,我们为电荷和角动量的不同值的质量特征值找到了高度准确的结果。对于2D带电的弦线黑洞,我们还使用VQE来计算哈密顿约束的期望值和与大众运营商的汉密尔顿约束的换向器,并与理论期望找到了极好的一致性。

The quantum mechanics of Rotating, Charged, de Sitter and String Theory black holes are of recent interest because of their peculiar thermodynamic properties, as well the mysterious nature of their microstates. A full quantum treatment of the operators involved in this systems could yield valuable information into their nature, similar to how quantum treatment yields valuable insight into atoms, molecules and elementary particles. We study four types of black holes using quantum computing, which include the 3D Rotating Banados-Teitelboim-Zanelli (BTZ) black hole, the 4D charged Reisner-Nordtrom (RN) black hole, the 4D charged Reisner-Nordstrom -de Sitter (RN-dS) black hole and the 2D charged string black hole. In these cases in addition to the Hamiltonian there is a Mass operator which plays an important role in describing the quantum states of the black hole. We compute the spectrum of these operators using classical and quantum computing. For quantum computing we use the Variational Quantum Eigensolver (VQE) which is hybrid classical-quantum algorithm that runs on near term quantum hardware. We perform our calculations using 4 qubits in both a harmonic oscillator and position basis, realizing the quantum operators of the black holes in terms of 16 x 16 matrices. For the 4 qubit case we find highly accurate results for the Mass eigenvalues for different values of the charge and angular momentum. For the 2D Charged String black hole we also use the VQE to compute the expectation value of the Hamiltonian constraint and the commutator of the Hamiltonian constraint with the mass operator and find excellent agreement with theoretical expectations.

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