<--- Back to Details
First PageDocument Content
Bethe–Salpeter equation / Propagator / Momentum / Physics / Quantum mechanics / Quantum field theory
Date: 2012-08-22 10:57:08
Bethe–Salpeter equation
Propagator
Momentum
Physics
Quantum mechanics
Quantum field theory

FB20, Fukuoka, Japan, 23 August 2012 Solving Bethe-Salpeter equation for scattering states V.A. Karmanov† and J. Carbonell‡

Add to Reading List

Source URL: www.phys.kyushu-u.ac.jp

Download Document from Source Website

File Size: 177,62 KB

Share Document on Facebook

Similar Documents

The MENA Business Angel Network, Seed Funds and Early Stage Market Players Mission Statement To support the Innovation momentum in the MENA

The MENA Business Angel Network, Seed Funds and Early Stage Market Players Mission Statement To support the Innovation momentum in the MENA

DocID: 1xVCO - View Document

For Immediate Release Citigroup Inc. (NYSE: C) April 20, 2018 Citi Continues Momentum for Supporting Clients on Belt and Road Initiative

For Immediate Release Citigroup Inc. (NYSE: C) April 20, 2018 Citi Continues Momentum for Supporting Clients on Belt and Road Initiative

DocID: 1xUzB - View Document

Institutional AccomplishmentsMeasures of momentum U.S. News & World Report ranking: 44, up from 98 ten years ago Northeastern has been ranked among the top 50

Institutional AccomplishmentsMeasures of momentum U.S. News & World Report ranking: 44, up from 98 ten years ago Northeastern has been ranked among the top 50

DocID: 1xTLi - View Document

Workshop “Empirical Methods of Linguistics in Philosophy” Technische Universität Dortmund, 13–14 March 2014 Theme The “experimental philosophy” movement has recently gained some momentum in the philosophical c

Workshop “Empirical Methods of Linguistics in Philosophy” Technische Universität Dortmund, 13–14 March 2014 Theme The “experimental philosophy” movement has recently gained some momentum in the philosophical c

DocID: 1voSu - View Document

Deformation and angular momentum in nuclear level densities -- Deformation in level densities: Bethe (sperical) and Ericsson (deformed) formulas. Rotational enhancement is carried by the deformed core. -- Combinatorial l

Deformation and angular momentum in nuclear level densities -- Deformation in level densities: Bethe (sperical) and Ericsson (deformed) formulas. Rotational enhancement is carried by the deformed core. -- Combinatorial l

DocID: 1voeJ - View Document