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January 11, 2001Physics 8411 Cross-Sections and Decay Rates There are three types of measurements one can make –static properties of particles (mass, charge,

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Presentation on theme: "January 11, 2001Physics 8411 Cross-Sections and Decay Rates There are three types of measurements one can make –static properties of particles (mass, charge,"— Presentation transcript:

1 January 11, 2001Physics 8411 Cross-Sections and Decay Rates There are three types of measurements one can make –static properties of particles (mass, charge, etc.) –decay rates (lifetimes/line-widths, branching ratios) –cross-sections (inclusive, semi-inclusive, exclusive) We will focus our attention on the dynamical properties of particles (decay rates and cross-sections), not because they are intrinsically more interesting than the static properties (mass, charge, etc.) but, rather, because they are more directly related to understanding CP violation. Understanding the masses of particles, and the patterns of masses, is a key problem in particle physics, and we will address it, in part, next quarter.

2 January 11, 2001Physics 8412 Differential Cross-Sections Classically, scattering from a point-like object, or a spherically symmetric potential, can be described in terms of the impact parameter of the incident particle with respect to the target and the (asymptotic) scattering angle. If the impact parameter is known, and the potential is known, the scattering angle is unique. While this is not true in the quantum mechanical world, understanding the classical picture is useful in developing intuition. Cross-sections measure the strengths of interactions. We expect that –“larger” objects should have larger cross-sections –“stronger” potentials (or their equivalent) should have larger cross-sections

3 January 11, 2001Physics 8413 Classical Scattering

4 January 11, 2001Physics 8414 Hard Sphere Scattering

5 January 11, 2001Physics 8415 Classical Rutherford Scattering

6 January 11, 2001Physics 8416 More Rutherford Scattering 2

7 January 11, 2001Physics 8417 Fermi’s Golden Rule for Scattering nota bene:

8 January 11, 2001Physics 8418 Lorentz Invariant Phase Space

9 January 11, 2001Physics 8419 Lorentz Invariant Phase Space, Continued

10 January 11, 2001Physics 84110 Transition Matrix Elements in Perturbation Theory - I

11 January 11, 2001Physics 84111 Transition Matrix Elements in Perturbation Theory - II

12 January 11, 2001Physics 84112 Transition Matrix Elements in Perturbation Theory - III

13 January 11, 2001Physics 84113 nota bene: Transition Matrix Elements in Perturbation Theory - IV


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