Quantum walking in curved spacetime: discrete metric

被引:8
|
作者
Arrighi, Pablo [1 ,2 ]
Di Molfetta, Giuseppe [1 ,3 ,4 ]
Facchini, Stefano [1 ]
机构
[1] Univ Toulon & Var, Aix Marseille Univ, CNRS, LIS, Marseille, France
[2] IXXI, Lyon, France
[3] Univ Valencia, CSIC, Dept Fis Teor, Dr Moliner 50, E-46100 Burjassot, Spain
[4] Univ Valencia, IFIC, Dr Moliner 50, E-46100 Burjassot, Spain
来源
QUANTUM | 2018年 / 2卷
关键词
LATTICE; DIRAC; EQUATION;
D O I
10.22331/q-2018-08-22-84
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A discrete-time quantum walk (QW) is essentially a unitary operator driving the evolution of a single particle on the lattice. Some QWs have familiar physics PDEs as their continuum limit. Some slight generalization of them (allowing for prior encoding and larger neighbourhoods) even have the curved spacetime Dirac equation, as their continuum limit. In the (1 + 1)-dimensional massless case, this equation decouples as scalar transport equations with tunable speeds. We characterise and construct all those QWs that lead to scalar transport with tunable speeds. The local coin operator dictates that speed; we provide concrete techniques to tune the speed of propagation, by making use only of a finite number of coin operators-differently from previous models, in which the speed of propagation depends upon a continuous parameter of the quantum coin. The interest of such a discretization is twofold : to allow for easier experimental implementations on the one hand, and to evaluate ways of quantizing the metric field, on the other.
引用
收藏
页数:14
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