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  2. Lorentz oscillator model - Wikipedia

    en.wikipedia.org/wiki/Lorentz_oscillator_model

    The model is named after the Dutch physicist Hendrik Antoon Lorentz. It is a classical, phenomenological model for materials with characteristic resonance frequencies (or other characteristic energy scales) for optical absorption, e.g. ionic and molecular vibrations, interband transitions (semiconductors), phonons, and collective excitations ...

  3. Hendrik Lorentz - Wikipedia

    en.wikipedia.org/wiki/Hendrik_Lorentz

    Lorentz was one of few scientists who supported Einstein's search for general relativity from the beginning – he wrote several research papers and discussed with Einstein personally and by letter. [24] For instance, he attempted to combine Einstein's formalism with Hamilton's principle (1915), [25] and to reformulate it in a coordinate-free ...

  4. List of quantum-mechanical systems with analytical solutions

    en.wikipedia.org/wiki/List_of_quantum-mechanical...

    The quantum harmonic oscillator; The quantum harmonic oscillator with an applied uniform field [1] The Inverse square root potential [2] The periodic potential The particle in a lattice; The particle in a lattice of finite length [3] The Pöschl–Teller potential; The quantum pendulum; The three-dimensional potentials The rotating system The ...

  5. Symmetry in quantum mechanics - Wikipedia

    en.wikipedia.org/wiki/Symmetry_in_quantum_mechanics

    Lorentz transformations can be parametrized by rapidity φ for a boost in the direction of a three-dimensional unit vector ^ = (,,), and a rotation angle θ about a three-dimensional unit vector ^ = (,,) defining an axis, so ^ = (,,) and ^ = (,,) are together six parameters of the Lorentz group (three for rotations and three for boosts). The ...

  6. Lorentz invariance in non-critical string theory - Wikipedia

    en.wikipedia.org/wiki/Lorentz_invariance_in_non...

    For the standard light cone gauge the Lorentz generators M μν are cubic in terms of oscillator variables a i, and their quantization acquires well known anomaly. Consider a set b i = (M μν ,ξ i ) which contains the Lorentz group generators and internal variables ξ i , complementing M μν to the full phase space.

  7. Tauc–Lorentz model - Wikipedia

    en.wikipedia.org/wiki/Tauc–Lorentz_model

    The Tauc–Lorentz model is a mathematical formula for the frequency dependence of the complex-valued relative permittivity, sometimes referred to as the dielectric function. The model has been used to fit the complex refractive index of amorphous semiconductor materials at frequencies greater than their optical band gap .

  8. Propagator - Wikipedia

    en.wikipedia.org/wiki/Propagator

    The usual derivation is to insert a complete set of single-particle momentum states between the fields with Lorentz covariant normalization, and then to show that the Θ functions providing the causal time ordering may be obtained by a contour integral along the energy axis, if the integrand is as above (hence the infinitesimal imaginary part ...

  9. Scalar field theory - Wikipedia

    en.wikipedia.org/wiki/Scalar_field_theory

    The most basic scalar field theory is the linear theory. Through the Fourier decomposition of the fields, it represents the normal modes of an infinity of coupled oscillators where the continuum limit of the oscillator index i is now denoted by x.