Examples of 'phonons' in a sentence
Meaning of "phonons"
In physics, a phonon is a collective excitation in a periodic, elastic arrangement of atoms or molecules in condensed matter, like solids and some liquids
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- plural of phonon
How to use "phonons" in a sentence
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phonons
This energy is quantized in the form of phonons.
They are called phonons and they too are bosons.
These vibrations in the crystals are called phonons.
Two important properties of phonons may be deduced.
Phonons move at the speed of sound in the material.
Electric field control element for phonons.
He assumed that phonons are diffusively.
Fractons are the fractal analog of phonons.
The phonons travel at less than the speed of light.
At this point the frequency of phonons approaches zero.
We can immediately deduce two important properties of phonons.
Sound phonons in solids are coherent movements of atoms within a lattice.
Quantum control of high overtone bulk acoustic phonons.
Phonons and shot noise.
Both systems are strongly coupled to phonons and strains.
See also
Phonons are quanta of vibrational energy typically in a crystal lattice or a solid.
Waves of vibrations traveling through crystals are called phonons.
Eight phonons are observed and compared to previous infrared results.
These normal modes are called phonons.
Phonons are the elementary excitation of vibration modes of this chain.
Quanta of sound are called phonons.
Thermal phonons can be created and destroyed by random energy fluctuations.
Two methods are used for modeling surface phonons.
Phonons in complex systems.
We have first investigated the wave properties of thermal phonons.
It should be observed that phonons are lost on leaving the superconducting cells.
This approach might be responsible for the scattering of phonons.
Gives rise to the formation of two phonons within the crystal.
He emphasized the coupling between energetic reaction and phonons.
The phonons in thermal circuits are discrete units of vibration in the atoms of a solid.
These vibrations are known as phonons.
Optical phonons correspond to vibrations internal to the molecular structures of the material.
One way is to simply increase the number of available phonons.
Phonons in solids.
In the case of light we have photons while in sound we have phonons.
Such structures provide resonances for phonons in up to three directions in the crystal.
These excitations are phonons.
Optical phonons that interact in this way with light are called infrared active.
This model is complex enough to display the salient features of phonons.
One important difference between phonons and magnons lies in their dispersion relations.
This formalism is much less standard to study the transport of phonons.
The coupling occurs when photons and phonons oscillate at the same frequency.
Measurements as a function of temperature showed evidence of scattering from flexural phonons.
Early methods involved converting phonons to electricity in quantum circuits called superconducting qubits.
Vibration and phonons.
This causes to emit phonons which form basins of positive ions around the electrons.
An optomechanical crystal to study interactions among colocalized photons and phonons.
The team was then able to transfer individual phonons from the qubit to the resonator.
A picosecond pulsed laser was used to generate and detect high frequency phonons.
The interaction of these acoustic phonons with light is called Brillouin scattering.