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  2. Beam emittance - Wikipedia

    en.wikipedia.org/wiki/Beam_emittance

    One of the most fundamental methods of measuring beam emittance is the quadrupole scan method. The emittance of the beam for a particular plane of interest (i.e., horizontal or vertical) can be obtained by varying the field strength of a quadrupole (or quadrupoles) upstream of a monitor (i.e., a wire or a screen). [4]

  3. Courant–Snyder parameters - Wikipedia

    en.wikipedia.org/wiki/Courant–Snyder_parameters

    One dimensional position-momentum plot, showing the beam ellipse described in terms of the Courant–Snyder parameters. In accelerator physics, the Courant–Snyder parameters (frequently referred to as Twiss parameters or CS parameters) are a set of quantities used to describe the distribution of positions and velocities of the particles in a beam. [1]

  4. Beta function (accelerator physics) - Wikipedia

    en.wikipedia.org/wiki/Beta_function_(accelerator...

    the beam is assumed to have a Gaussian shape in the transverse direction σ ( s ) {\displaystyle \sigma (s)} is the width parameter of this Gaussian ϵ {\displaystyle \epsilon } is the RMS geometrical beam emittance , which is normally constant along the trajectory when there is no acceleration

  5. Intrabeam scattering - Wikipedia

    en.wikipedia.org/wiki/Intrabeam_Scattering

    Intrabeam scattering (IBS) is an effect in accelerator physics where collisions between particles couple the beam emittance in all three dimensions. This generally causes the beam size to grow. In proton accelerators, intrabeam scattering causes the beam to grow slowly over a period of several hours. This limits the luminosity lifetime.

  6. Mean transverse energy - Wikipedia

    en.wikipedia.org/wiki/Mean_transverse_energy

    Emittance is a common quantity in beam physics which describes the volume of a beam in phase space, and is normally conserved through typical linear beam transformations; for example, one may transition from a beam with a large spatial size and a small momentum spread to one with a small spatial size and a large momentum spread, both cases retaining the same emittance.

  7. Swiss Light Source - Wikipedia

    en.wikipedia.org/wiki/Swiss_Light_Source

    A total of 177 quadrupole magnets (magnetic lenses) focuses the beam to provide a beam emittance of 5.5 nm rad. [1] 120 sextupole magnets correct the chromatic focusing errors of the quadrupoles. 73 horizontal and vertical beam steerers are used to continuously correct the position of the electron beam. Finally 24 skew quadrupole magnets are ...

  8. Radiation damping - Wikipedia

    en.wikipedia.org/wiki/Radiation_damping

    The two main ways of using radiation damping to reduce the emittance of a particle beam are the use of undulators and damping rings (often containing undulators), both relying on the same principle of inducing synchrotron radiation to reduce the particles' momentum, then replacing the momentum only in the desired direction of motion.

  9. Etendue - Wikipedia

    en.wikipedia.org/wiki/Etendue

    Etendue is the product of geometric extent and the squared refractive index of a medium through which the beam propagates. [1] Because angles, solid angles, and refractive indices are dimensionless quantities, etendue is often expressed in units of area (given by dS). However, it can alternatively be expressed in units of area (square meters ...

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