From Dirac Notation to Probability Bracket Notation: Time Evolution and Path Integral under Wick Rotations

Fuente: arXiv
Saved in:
Bibliographic Details
Main Author: Wang, Xing M.
Format: Preprint
Published: 2009
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916720436838400
author Wang, Xing M.
author_facet Wang, Xing M.
contents In this work, we advance the development of the Probability Bracket Notation (PBN), a formalism inspired by Dirac's notation in quantum mechanics, to provide a unified framework for probability modeling. We demonstrate that under a Special Wick Rotation (SWR), an imaginary-time map, the Schrödinger equation, the transition amplitude, and its associated path integral in Dirac notation transform into the master equation, the transition probability, and its Euclidean path integral in the PBN, from which we can reproduce the master equation, representing induced micro-diffusion processes. By extending this approach through a General Wick Rotation (GWR) and employing an anti-Hermitian wave-number operator, we perform parallel derivations of path integrals in both the Dirac and PBN frameworks. This leads to the formulation of the Euclidean Lagrangian for induced diffusions and the strong-damping harmonic oscillator (described by the Smoluchowski diffusion equation). Our findings highlight the versatility of the PBN in bridging quantum mechanics and stochastic processes, offering a coherent notation system for analyzing time evolution and path integrals across these domains.
format Preprint
id arxiv_https___arxiv_org_abs_0901_4816
institution arXiv
publishDate 2009
record_format arxiv
spellingShingle From Dirac Notation to Probability Bracket Notation: Time Evolution and Path Integral under Wick Rotations
Wang, Xing M.
Mathematical Physics
81S40, 82C10, 82C31
In this work, we advance the development of the Probability Bracket Notation (PBN), a formalism inspired by Dirac's notation in quantum mechanics, to provide a unified framework for probability modeling. We demonstrate that under a Special Wick Rotation (SWR), an imaginary-time map, the Schrödinger equation, the transition amplitude, and its associated path integral in Dirac notation transform into the master equation, the transition probability, and its Euclidean path integral in the PBN, from which we can reproduce the master equation, representing induced micro-diffusion processes. By extending this approach through a General Wick Rotation (GWR) and employing an anti-Hermitian wave-number operator, we perform parallel derivations of path integrals in both the Dirac and PBN frameworks. This leads to the formulation of the Euclidean Lagrangian for induced diffusions and the strong-damping harmonic oscillator (described by the Smoluchowski diffusion equation). Our findings highlight the versatility of the PBN in bridging quantum mechanics and stochastic processes, offering a coherent notation system for analyzing time evolution and path integrals across these domains.
title From Dirac Notation to Probability Bracket Notation: Time Evolution and Path Integral under Wick Rotations
topic Mathematical Physics
81S40, 82C10, 82C31
url https://arxiv.org/abs/0901.4816