BIBLIO is the largest independent book marketplace in the world, with over 100 million books.

Skip to content

A Bayesian Analysis of QCD Sum Rules (Springer Theses)

A Bayesian Analysis of QCD Sum Rules (Springer Theses)

A Bayesian Analysis of QCD Sum Rules (Springer Theses)
Stock photo: cover may vary

A Bayesian Analysis of QCD Sum Rules (Springer Theses) Paperback - 2015

by Gubler, Philipp

Add to wish list
  • Used
  • Good
  • Paperback
Used - Good

Description

paperback. Good. Access codes and supplements are not guaranteed with used items. May be an ex-library book.
Ask the seller a question Add to wish list
A$198.27
Free Delivery within USA
Standard delivery: 7 to 14 days
More delivery options
Dropship order
Ships from Bonita (California, United States)

Details

  • Title A Bayesian Analysis of QCD Sum Rules (Springer Theses)
  • Author Gubler, Philipp
  • Binding Paperback
  • Condition Used - Good
  • Pages 190
  • Volumes 1
  • Language ENG
  • Publisher Springer
  • Publication date 2015-05-15
  • Illustrated Yes
  • Features Illustrated
  • Bookseller's Inventory # 4431546960.G
  • ISBN 9784431546962 / 4431546960
  • Weight 0.66 lbs (0.30 kg)
  • Dimensions 9.21 x 6.14 x 0.44 in (23.39 x 15.60 x 1.12 cm)
  • Category Science
  • Dewey Decimal Code 530.14
  • Quantity available 1

About Bonita California, United States

Biblio member since 2020

Terms of Sale: 30 day return guarantee, with full refund including original shipping costs for up to 30 days after delivery if an item arrives misdescribed or damaged.

Browse books from Bonita

Reader reviews for A Bayesian Analysis of QCD Sum Rules (Springer Theses)

From the rear cover

The author develops a novel analysis method for QCD sum rules (QCDSR) by applying the maximum entropy method (MEM) to arrive at an analysis with less artificial assumptions than previously held. This is a first-time accomplishment in the field.

In this thesis, a reformed MEM for QCDSR is formalized and is applied to the sum rules of several channels: the light-quark meson in the vector channel, the light-quark baryon channel with spin and isospin 1/2, and several quarkonium channels at both zero and finite temperatures.

This novel technique of combining QCDSR with MEM is applied to the study of quarkonium in hot matter, which is an important probe of the quark-gluon plasma currently being created in heavy-ion collision experiments at RHIC and LHC.

About the author

Dr. Philipp Gubler
Tokyo Institute of Technology, Tokyo, Japan
tracking-