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  2. Weyl semimetal - Wikipedia

    en.wikipedia.org/wiki/Weyl_semimetal

    Weyl spinors are a solution to the Dirac equation derived by Hermann Weyl, called the Weyl equation. [3] For example, one-half of a charged Dirac fermion of a definite chirality is a Weyl fermion. [4] Weyl fermions may be realized as emergent quasiparticles in a low-energy condensed matter system.

  3. Quasiparticle - Wikipedia

    en.wikipedia.org/wiki/Quasiparticle

    For example, a solid with two identical phonons does not have exactly twice the excitation energy of a solid with just one phonon, because the crystal vibration is slightly anharmonic. However, in many materials, the elementary excitations are very close to being independent.

  4. Acoustic metamaterial - Wikipedia

    en.wikipedia.org/wiki/Acoustic_metamaterial

    An acoustic metamaterial, sonic crystal, or phononic crystal is a material designed to manipulate sound waves or phonons in gases, liquids, and solids (crystal lattices).By carefully controlling properties such as the bulk modulus β, density ρ, and chirality, these materials can be tailored to interact with sound in specific ways, such as transmitting, trapping, or amplifying waves at ...

  5. Dirac matter - Wikipedia

    en.wikipedia.org/wiki/Dirac_matter

    While the Weyl equation was originally derived for odd spatial dimensions, the generalization of a 3D Weyl fermion state in 2D leads to a distinct topological state of matter, labeled as 2D Weyl semimetals. 2D Weyl semimetals are spin-polarized analogues of graphene that promise access to topological properties of Weyl fermions in (2+1)-dim ...

  6. Dirac cone - Wikipedia

    en.wikipedia.org/wiki/Dirac_cone

    The three first are Type-I Weyl semimetals, the last one is a Type-II Weyl semimetal. In quantum mechanics , Dirac cones are a kind of crossing-point which electrons avoid , [ 8 ] where the energy of the valence and conduction bands are not equal anywhere in two dimensional lattice k -space , except at the zero dimensional Dirac points.

  7. Chirality (physics) - Wikipedia

    en.wikipedia.org/wiki/Chirality_(physics)

    A chiral phenomenon is one that is not identical to its mirror image (see the article on mathematical chirality). The spin of a particle may be used to define a handedness, or helicity, for that particle, which, in the case of a massless particle, is the same as chirality. A symmetry transformation between the two is called parity transformation.

  8. Phonon polariton - Wikipedia

    en.wikipedia.org/wiki/Phonon_polariton

    In condensed matter physics, a phonon polariton is a type of quasiparticle that can form in a diatomic ionic crystal due to coupling of transverse optical phonons and photons. [1] They are particular type of polariton , which behave like bosons .

  9. Surface phonon - Wikipedia

    en.wikipedia.org/wiki/Surface_phonon

    In solid state physics, a surface phonon is the quantum of a lattice vibration mode associated with a solid surface. Similar to the ordinary lattice vibrations in a bulk solid (whose quanta are simply called phonons), the nature of surface vibrations depends on details of periodicity and symmetry of a crystal structure. Surface vibrations are ...