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In function approximation
In condensed matter physics
Condensed matter physics is the field of physics that deals with the macroscopic and microscopic physical properties of matter, especially the solid and liquid phases which arise from electromagnetic forces between atoms. More generally, the s ...
an energy eigenfunction
In mathematics, an eigenfunction of a linear operator ''D'' defined on some function space is any non-zero function f in that space that, when acted upon by ''D'', is only multiplied by some scaling factor called an eigenvalue. As an equation, ...
for a mobile charge carrier in a crystal can be expressed as a Bloch wave:
:
where ''n'' is the index for the band (for example, conduction or valence band) r is a spatial location, and k is a wavevector. The exponential is a sinusoidally varying function corresponding to a slowly varying envelope modulating the rapidly varying part of the wavefunction ''u''''n'',k describing the behavior of the wavefunction close to the cores of the atoms of the lattice. The envelope is restricted to k-values within a range limited by the Brillouin zone of the crystal, and that limits how rapidly it can vary with location r.
In determining the behavior of the carriers using quantum mechanics
Quantum mechanics is a fundamental theory in physics that provides a description of the physical properties of nature at the scale of atoms and subatomic particles. It is the foundation of all quantum physics including quantum chemistry, q ...
, the ''envelope approximation'' usually is used in which the Schrödinger equation
The Schrödinger equation is a linear partial differential equation that governs the wave function of a quantum-mechanical system. It is a key result in quantum mechanics, and its discovery was a significant landmark in the development of th ...
is simplified to refer only to the behavior of the envelope, and boundary conditions are applied to the envelope function directly, rather than to the complete wavefunction.[ For example, the wavefunction of a carrier trapped near an impurity is governed by an envelope function ''F'' that governs a superposition of Bloch functions:
:
where the Fourier components of the envelope ''F''(k) are found from the approximate Schrödinger equation.][ In some applications, the periodic part ''u''k is replaced by its value near the band edge, say k=k0, and then:][
:
]
In diffraction patterns
Diffraction pattern
Diffraction is defined as the interference or bending of waves around the corners of an obstacle or through an aperture into the region of geometrical shadow of the obstacle/aperture. The diffracting object or aperture effectively becomes a s ...
s from multiple slits have envelopes determined by the single slit diffraction pattern. For a single slit the pattern is given by:[
:
where α is the diffraction angle, ''d'' is the slit width, and λ is the wavelength. For multiple slits, the pattern is ][
:
where ''q'' is the number of slits, and ''g'' is the grating constant. The first factor, the single-slit result ''I1'', modulates the more rapidly varying second factor that depends upon the number of slits and their spacing.
]
Estimation
An envelope detector is an electronic circuit that extracts the envelope from a signal.
In digital signal processing
Digital signal processing (DSP) is the use of digital processing, such as by computers or more specialized digital signal processors, to perform a wide variety of signal processing operations. The digital signals processed in this manner ar ...
, the envelope may be estimated employing the Hilbert transform or a moving RMS amplitude.
See also
*
* Empirical mode decomposition
* Envelope (mathematics)
*Envelope tracking
Envelope tracking (ET) describes an approach to radio frequency (RF) amplifier design in which the power supply voltage applied to the RF power amplifier is continuously adjusted to ensure that the amplifier is operating at peak efficiency for powe ...
* Instantaneous phase
*Modulation
In electronics and telecommunications, modulation is the process of varying one or more properties of a periodic waveform, called the '' carrier signal'', with a separate signal called the ''modulation signal'' that typically contains informat ...
* Mathematics of oscillation
* Peak envelope power
*Spectral envelope
The power spectrum S_(f) of a time series x(t) describes the distribution of power into frequency components composing that signal. According to Fourier analysis, any physical signal can be decomposed into a number of discrete frequencies, ...
References
{{citizendium, title=Envelope function
Interference
Interferometry
Waves
Radio modulation modes
Radio electronics