Published June 1988 | Version v1
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Physics with polarized electron beams

Description

As a distinct field, elementary particle physics is now approximately forty years old. In all that time, only a few of the thousands of experiments that have been performed have made use of spin polarized particle beams. There are two reasons for this lack of interest. The first is that spin polarized beams are difficult to produce, accelerate, and transport. The second reason is that any physical process that can occur during the collision of a polarized particle with another (polarized or not) can also occur during the collision of unpolarized particles. One might ask then, why has any effort been expended on the subject? The answer, at least in the case of polarized electron beams, is that electron accelerators and storage rings have in recent years achieved sufficient energy to begin to probe the weak interaction directly. The weak interaction distinguishes between left- and right-handed fermionic currents. Left-handed particles interact in a fundamentally different way than their right-handed counterparts. If the experimenter wishes to explore or exploit this difference, he (or she) must either prepare the spin state of the incident particles or analyze the spin state of outgoing particles. For reasons, of generality and improved statistical precision, the former is usually preferable to the latter. The first of these lectures will review some of the techniques necessary for the production, transport, and monitoring of polarized electron (or positron) beams. The second lecture will survey some of the physics possibilities of polarized electron--positron collisions. 33 refs., 26 figs., 5 tabs

Availability note (English)

Available from NTIS, PC A03/MF A01; 1 as DE88012745.

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Additional details

Publishing Information

Imprint Pagination
48 p.
Report number
SLAC-PUB--4656

Conference

Title
looking beyond the Z.
Acronym
SLAC summer institute on particle physics
Dates
10-21 Aug 1987.
Place
Stanford, CA (USA).

Optional Information

Notes
Portions of this document are illegible in microfiche products.
Secondary number(s)
CONF-870821--13.