Hadron Structure in Electroweak Precision Measurements (Springer Theses). This item is unavailable.
Language: English
Published by Springer, 2016
Series: Book 4 of 797 - Springer Theses
- Softcover
- New

Seller: Majestic Books, Hounslow, United KingdomMajestic Books
AbeBooks seller since January 19, 2007
Condition: New
US$ 180.98
Item description from seller
Print on Demand pp. 136.
Seller Inventory # 385543512
- Title
- Hadron Structure in Electroweak Precision Measurements (Springer Theses)
- Author
- Hall, Nathan L.
- Publisher
- Springer
- Publication year
- 2016
- Condition
- New
- Binding
- Soft cover
- Language
- English
- ISBN 10
- 3319369938
- ISBN 13
- 9783319369938
- Series
- Book 4 of 797: Springer Theses
This thesis examines the γZ box contribution to the weak charge of the proton. Here, by combining recent parity-violating electron-deuteron scattering data with our current understanding of parton distribution functions, the author shows that one can limit this model dependence. The resulting construction is a robust model of the γγ and γZ structure functions that can also be used to study a variety of low-energy phenomena. Two such cases are discussed in this work, namely, the nucleon’s electromagnetic polarizabilities and quark-hadron duality.
By using phenomenological information to constrain the input structure functions, this important but previously poorly understood radiative correction is determined at the kinematics of the parity-violating experiment, QWEAK, to a degree of precision more than twice that of the previous best estimate.
A detailed investigation into available parametrizations of the electromagnetic and interference cross-sections indicates that earlier analyses suffered from the inability to correctly quantify their model dependence.
"Synopsis" may belong to another edition of this title.
From the Back Cover
By using phenomenological information to constrain the input structure functions, this important but previously poorly understood radiative correction is determined at the kinematics of the parity-violating experiment, QWEAK, to a degree of precision more than twice that of the previous best estimate.
A detailed investigation into available parametrizations of the electromagnetic and interference cross-sections indicates that earlier analyses suffered from the inability to correctly quantify their model dependence.
"About the title" may belong to another edition of this title.