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  2. Reciprocal lattice - Wikipedia

    en.wikipedia.org/wiki/Reciprocal_lattice

    The direct lattice or real lattice is a periodic function in physical space, such as a crystal system (usually a Bravais lattice). The reciprocal lattice exists in the mathematical space of spatial frequencies, known as reciprocal space or k space, which is the dual of physical space considered as a vector space, and the reciprocal lattice is ...

  3. Bravais lattice - Wikipedia

    en.wikipedia.org/wiki/Bravais_lattice

    The seven lattice systems and their Bravais lattices in three dimensions. In geometry and crystallography, a Bravais lattice, named after Auguste Bravais (), [1] is an infinite array of discrete points generated by a set of discrete translation operations described in three dimensional space by

  4. Brillouin zone - Wikipedia

    en.wikipedia.org/wiki/Brillouin_zone

    The reciprocal lattices (dots) and corresponding first Brillouin zones of (a) square lattice and (b) hexagonal lattice. In mathematics and solid state physics, the first Brillouin zone (named after Léon Brillouin) is a uniquely defined primitive cell in reciprocal space.

  5. Miller index - Wikipedia

    en.wikipedia.org/wiki/Miller_index

    This is based on the fact that a reciprocal lattice vector (the vector indicating a reciprocal lattice point from the reciprocal lattice origin) is the wavevector of a plane wave in the Fourier series of a spatial function (e.g., electronic density function) which periodicity follows the original Bravais lattice, so wavefronts of the plane wave ...

  6. Crystal structure - Wikipedia

    en.wikipedia.org/wiki/Crystal_structure

    For the special case of simple cubic crystals, the lattice vectors are orthogonal and of equal length (usually denoted a); similarly for the reciprocal lattice. So, in this common case, the Miller indices ( ℓmn ) and [ ℓmn ] both simply denote normals/directions in Cartesian coordinates .

  7. Hexagonal lattice - Wikipedia

    en.wikipedia.org/wiki/Hexagonal_lattice

    The honeycomb point set is a special case of the hexagonal lattice with a two-atom basis. [1] The centers of the hexagons of a honeycomb form a hexagonal lattice, and the honeycomb point set can be seen as the union of two offset hexagonal lattices. In nature, carbon atoms of the two-dimensional material graphene are arranged in a honeycomb ...

  8. Wigner–Seitz cell - Wikipedia

    en.wikipedia.org/wiki/Wigner–Seitz_cell

    The Wigner–Seitz cell always has the same point symmetry as the underlying Bravais lattice. [9] For example, the cube, truncated octahedron, and rhombic dodecahedron have point symmetry O h, since the respective Bravais lattices used to generate them all belong to the cubic lattice system, which has O h point symmetry.

  9. Structure factor - Wikipedia

    en.wikipedia.org/wiki/Structure_factor

    The reciprocal lattice is easily constructed in one dimension: for particles on a line with a period , the reciprocal lattice is an infinite array of points with spacing /. In two dimensions, there are only five Bravais lattices. The corresponding reciprocal lattices have the same symmetry as the direct lattice.