首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Hellmann–Feynman connection for the relative Fisher information
Authors:RC Venkatesan  A Plastino
Institution:1. Systems Research Corporation, Aundh, Pune 411007, India;2. IFLP, National University La Plata & National Research (CONICET) C. C., 727 1900, La Plata, Argentina
Abstract:The (i) reciprocity relations for the relative Fisher information (RFI, hereafter) and (ii) a generalized RFI–Euler theorem are self-consistently derived from the Hellmann–Feynman theorem. These new reciprocity relations generalize the RFI–Euler theorem and constitute the basis for building up a mathematical Legendre transform structure (LTS, hereafter), akin to that of thermodynamics, that underlies the RFI scenario. This demonstrates the possibility of translating the entire mathematical structure of thermodynamics into a RFI-based theoretical framework. Virial theorems play a prominent role in this endeavor, as a Schrödinger-like equation can be associated to the RFI. Lagrange multipliers are determined invoking the RFI–LTS link and the quantum mechanical virial theorem. An appropriate ansatz allows for the inference of probability density functions (pdf’s, hereafter) and energy-eigenvalues of the above mentioned Schrödinger-like equation. The energy-eigenvalues obtained here via inference are benchmarked against established theoretical and numerical results. A principled theoretical basis to reconstruct the RFI-framework from the FIM framework is established. Numerical examples for exemplary cases are provided.
Keywords:Relative Fisher information  Hellmann&ndash  Feynman theorem  Reciprocity relations  Generalized RFI&ndash  Euler theorem  Legendre transform structure  Energy-eigenvalue inference
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号