Improved Method for Quantum Mechanical Three-body Problems PDF Download

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Improved Method for Quantum Mechanical Three-body Problems

Improved Method for Quantum Mechanical Three-body Problems PDF Author: Leonard Eyges
Publisher:
ISBN:
Category : Quantum theory
Languages : en
Pages : 14

Book Description


Improved Method for Quantum Mechanical Three-body Problems

Improved Method for Quantum Mechanical Three-body Problems PDF Author: Leonard Eyges
Publisher:
ISBN:
Category : Quantum theory
Languages : en
Pages : 14

Book Description


Improved Method for Quantum-mechanical Three-body Problems

Improved Method for Quantum-mechanical Three-body Problems PDF Author: Leonard Eyges
Publisher:
ISBN:
Category : Integral equations
Languages : en
Pages : 18

Book Description
The quantum-mechanical ground-state problem for three identical particles bound by attractive inter-particle potentials is discussed. For this problem it has previously been shown that it is advantageous to write the wave function in a special functional form, form which an integral equation which is equivalent to the Schrodinger equation was derived. In this paper a new method for solving this equation is presented. The method involves an expansion of a two-body problem with a potential of the same shape as the inter-particle potential in the three-body problem, but of enhanced strength.

Improved Method for Quantum Mechanical Three-body Problems

Improved Method for Quantum Mechanical Three-body Problems PDF Author: Leonard Eyges
Publisher:
ISBN:
Category : Quantum mechanics
Languages : en
Pages : 0

Book Description


Improved Method for Quantum Mechanical Three-body Problems

Improved Method for Quantum Mechanical Three-body Problems PDF Author: Leonard Eyges
Publisher:
ISBN:
Category : Integral equations
Languages : en
Pages : 0

Book Description
The quantum-mechanical ground-state problem for three identical particles bound by attractive inter-particle potentials is discussed. For this problem it has previously been shown that it is advantageous to write the wave function in a special functional form, form which an integral equation which is equivalent to the Schrodinger equation was derived. In this paper a new method for solving this equation is presented. The method involves an expansion of a two-body problem with a potential of the same shape as the inter-particle potential in the three-body problem, but of enhanced strength.

The Quantum Mechanical Three-Body Problem

The Quantum Mechanical Three-Body Problem PDF Author: Erich W. Schmid
Publisher: Elsevier
ISBN: 1483160785
Category : Science
Languages : en
Pages : 226

Book Description
The Quantum Mechanical Three-Body Problem deals with the three-body problem in quantum mechanics. Topics include the two- and three-particle problem, the Faddeev equations and their solution, separable potentials, and variational methods. This book has eight chapters; the first of which introduces the reader to the quantum mechanical three-body problem, its difficulties, and its importance in nuclear physics. Scattering experiments with three-particle breakup are presented. Attention then turns to some concepts of quantum mechanics, with emphasis on two-particle scattering and the Hamiltonian for three particles. The chapters that follow are devoted to the Faddeev equations, including those for scattering states and transition operators, and how such equations can be solved in practice. The solution of the Faddeev equations for separable potentials and local potentials is presented, along with the use of Padé approximation to solve the Faddeev equations. This book concludes with an appraisal of variational methods for bound states, elastic and rearrangement scattering, and the breakup reaction. A promising variational method for solving the Faddeev equations is described. This book will be of value to students interested in three-particle physics and to experimentalists who want to understand better how the theoretical data are derived.

Government-wide Index to Federal Research & Development Reports

Government-wide Index to Federal Research & Development Reports PDF Author:
Publisher:
ISBN:
Category : Government publications
Languages : en
Pages : 1576

Book Description


OAR Quarterly Index of Current Research Results

OAR Quarterly Index of Current Research Results PDF Author: United States. Air Force. Office of Aerospace Research
Publisher:
ISBN:
Category : Aeronautics, Military
Languages : en
Pages : 576

Book Description


Bibliography of AFCRL Publications from 1 July to 30 September 1968

Bibliography of AFCRL Publications from 1 July to 30 September 1968 PDF Author: Air Force Cambridge Research Laboratories (U.S.)
Publisher:
ISBN:
Category : Geophysics
Languages : en
Pages : 80

Book Description


Bibliography of AFCRL In-house Technical Reports

Bibliography of AFCRL In-house Technical Reports PDF Author: Air Force Cambridge Research Laboratories (U.S.)
Publisher:
ISBN:
Category : Atmosphere, Upper
Languages : en
Pages : 88

Book Description
The bibliography of AFCRL in-house technical reports lists all reports issued in the existing series. In addition, appendices list reports issued from 1962 to 1964 when series designations were not used, and reports issued in now-defunct series.

Bibliography of AFCRL Publications from 1 July 1966 to 30 September 1967

Bibliography of AFCRL Publications from 1 July 1966 to 30 September 1967 PDF Author: Air Force Cambridge Research Laboratories (U.S.)
Publisher:
ISBN:
Category : Astrophysics
Languages : en
Pages : 192

Book Description
This bibliography lists all in-house reports, journal articles, and contractor reports issued from 1 July 1966 to 30 September 1967. Part I lists all in-house reports by the series in which they were issued; Part II lists all in-house reports, journal articles, and contractor reports by the Laboratory responsible for their preparation. In Part I, the reports are listed numerically by series; in Part II, in-house reports and journal articles are listed alphabetically by author, and contractor reports are listed numerically by the AFCRL report number.