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Causality Rules (Second ­Edition)
Dispersion theory in non-elementary particle physics (IOP ebooks)

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Format
Hardback, 140 pages
Published
United Kingdom, 3 June 2022

Causality: Cause and effect. In classical physics, an effect cannot occur before its cause. In Einstein's theory of special relativity, causality means that an effect cannot occur from a cause that is not in the back (past) light cone of that event.

The books cover the useful physical relations inferred by unitarity and causality. A famous example is the Kramers-Kronig relation for the refractive index of a gas or dilute medium. For example, in Chapter 3 generalises the Kramers-Kronig relation to relativistic medium, such as CMB (photon gas). These relations are extensively also used in particle and nuclear physics. Especially useful are the so-called “sum rules”, such as the Gerasimov-Drell-Hearn (GDH) or the Baldin sum rule.

The author notes that the first edition is too brief. In his teaching practice, he sees that is is challenging to use as a standalone text. He intends to improve the explanations of many topics that students found particularly challenging. The additional material will make the book more timely, self-contained, and logically complete.

Key Features:

  • Modern book on a timely subject
  • Classroom friendly and built on newly developed courses taught at a major Physics Department in Germany
  • Advanced material written in simple non-technical language
  • Includes pedagogical examples and discussions of the current forefront research

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£99.17
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£120.00
Save £20.83 (17%)
Ships from UK Estimated delivery date: 7th Apr - 9th Apr from UK

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Product Description

Causality: Cause and effect. In classical physics, an effect cannot occur before its cause. In Einstein's theory of special relativity, causality means that an effect cannot occur from a cause that is not in the back (past) light cone of that event.

The books cover the useful physical relations inferred by unitarity and causality. A famous example is the Kramers-Kronig relation for the refractive index of a gas or dilute medium. For example, in Chapter 3 generalises the Kramers-Kronig relation to relativistic medium, such as CMB (photon gas). These relations are extensively also used in particle and nuclear physics. Especially useful are the so-called “sum rules”, such as the Gerasimov-Drell-Hearn (GDH) or the Baldin sum rule.

The author notes that the first edition is too brief. In his teaching practice, he sees that is is challenging to use as a standalone text. He intends to improve the explanations of many topics that students found particularly challenging. The additional material will make the book more timely, self-contained, and logically complete.

Key Features:

Show more
Product Details
EAN
9780750334297
ISBN
0750334290
Other Information
With figures in colour and black and white
Dimensions
25.4 x 17.8 x 1 centimeters (0.44 kg)
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