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Riemann curvature tensor

About: Riemann curvature tensor is a research topic. Over the lifetime, 6248 publications have been published within this topic receiving 138871 citations. The topic is also known as: Riemann–Christoffel tensor.


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TL;DR: In this article, the geometric properties of the manifold of states described as (uniform) matrix product states are studied, and the main interest is in the states living in the tangent space to the base manifold, which have been shown to be interesting in relation to time dependence and elementary excitations.
Abstract: We study the geometric properties of the manifold of states described as (uniform) matrix product states. Due to the parameter redundancy in the matrix product state representation, matrix product states have the mathematical structure of a (principal) fiber bundle. The total space or bundle space corresponds to the parameter space, i.e., the space of tensors associated to every physical site. The base manifold is embedded in Hilbert space and can be given the structure of a Kahler manifold by inducing the Hilbert space metric. Our main interest is in the states living in the tangent space to the base manifold, which have recently been shown to be interesting in relation to time dependence and elementary excitations. By lifting these tangent vectors to the (tangent space) of the bundle space using a well-chosen prescription (a principal bundle connection), we can define and efficiently compute an inverse metric, and introduce differential geometric concepts such as parallel transport (related to the Levi-Civita connection) and the Riemann curvature tensor.

64 citations

Journal ArticleDOI
TL;DR: In this article, the sharp constants of Hardy and Rellich inequalities related to the geodesic distance on a complete, simply connected Riemannian manifold with negative curvature were obtained.
Abstract: Let M be a complete, simply connected Riemannian manifold with negative curvature. We obtain the sharp constants of Hardy and Rellich inequalities related to the geodesic distance on M. Furthermore, if M is with strictly negative curvature, we show that the Lp Hardy inequalities can be globally refined by adding remainder terms like the Brezis–Vazquez improvement in case p ≥ 2, which is contrary to the case of Euclidean spaces.

64 citations

Journal ArticleDOI
TL;DR: In this paper, a non-Riemannian quantity is closely related to the flag curvature, and it is shown that the flag's curvature is weakly isotropic if and only if this non-riemannians quantity takes a special form.
Abstract: In this paper, we study Finsler metrics of scalar flag curvature. We find that a non-Riemannian quantity is closely related to the flag curvature. We show that the flag curvature is weakly isotropic if and only if this non-Riemannian quantity takes a special form. This will lead to a better understanding on Finsler metrics of scalar flag curvature.

64 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202364
2022152
2021169
2020163
2019174
2018180