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  2. Scattering parameters - Wikipedia

    en.wikipedia.org/wiki/Scattering_parameters

    Note the format of the parameter notation SXYab, where "S" stands for scattering parameter or S-parameter, "X" is the response mode (differential or common), "Y" is the stimulus mode (differential or common), "a" is the response (output) port and b is the stimulus (input) port. This is the typical nomenclature for scattering parameters.

  3. Network analyzer (electrical) - Wikipedia

    en.wikipedia.org/wiki/Network_analyzer_(electrical)

    A VNA is a test system that enables the RF performance of radio frequency and microwave devices to be characterised in terms of network scattering parameters, or S parameters. The diagram shows the essential parts of a typical 2-port vector network analyzer (VNA). The two ports of the device under test (DUT) are denoted port 1 (P1) and port 2 ...

  4. Mandelstam variables - Wikipedia

    en.wikipedia.org/wiki/Mandelstam_variables

    In this diagram, two particles come in with momenta p 1 and p 2, they interact in some fashion, and then two particles with different momentum (p 3 and p 4) leave.. In theoretical physics, the Mandelstam variables are numerical quantities that encode the energy, momentum, and angles of particles in a scattering process in a Lorentz-invariant fashion.

  5. S-matrix - Wikipedia

    en.wikipedia.org/wiki/S-matrix

    In both cases, the perturbative calculation of the S-matrix leads to Feynman diagrams. In scattering theory, the S-matrix is an operator mapping free particle in-states to free particle out-states (scattering channels) in the Heisenberg picture. This is very useful because often we cannot describe the interaction (at least, not the most ...

  6. Scattering - Wikipedia

    en.wikipedia.org/wiki/Scattering

    A Feynman diagram of scattering between two electrons by emission of a virtual photon. Electromagnetic waves are one of the best known and most commonly encountered forms of radiation that undergo scattering. [16] Scattering of light and radio waves (especially in radar) is particularly important.

  7. Chaotic scattering - Wikipedia

    en.wikipedia.org/wiki/Chaotic_scattering

    Fig. 1: Diagram of Gaspard–Rice scattering system showing major parameters. An excellent example system is the "Gaspard–Rice" (GR) scattering system [1] —also known simply as the "three-disc" system—which embodies many of the important concepts in chaotic scattering while being simple and easy to understand and simulate.

  8. Magic tee - Wikipedia

    en.wikipedia.org/wiki/Magic_Tee

    Now by reciprocity, the coupling between any pair of ports is the same in either direction (the scattering matrix is symmetric). So if the H-plane port is matched, then half the power entering either one of the collinear ports will leave by the H-plane port. If the E-plane port is also matched, then half power will leave by the E-plane port.

  9. Dynamic light scattering - Wikipedia

    en.wikipedia.org/wiki/Dynamic_light_scattering

    Hypothetical dynamic light scattering of two samples: Larger particles on the top and smaller particles on the bottom. Dynamic light scattering (DLS) is a technique in physics that can be used to determine the size distribution profile of small particles in suspension or polymers in solution. [1]