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If there was only one side of cladding material, the device would be a simple heterostructure.
It may be a bulk semiconductor, but more often a quantum heterostructure.
The innovation that met the room temperature challenge was the double heterostructure laser.
Thus, these materials can be incorporated together in the same heterostructure without introducing a significant amount of strain.
Ideally the (002) orientation should be maintained throughout the heterostructure, and further work is required.
There must be two boundaries for the device to be a double heterostructure.
A double heterostructure is formed when two semiconductor materials are grown into a "sandwich".
Aluminum-free diode heterostructure lasers became the next step in his scientific life.
The second waveguide type is a buried heterostructure.
When a current is applied to the ends of the pin structure, electrons and holes are injected into the heterostructure.
Also, in future we plan for cheaper and more efficient heterostructure for photovoltaic applications.
The double heterostructure is a very useful structure in optoelectronic devices and has interesting electronic properties.
The generation of coherent phonons in a double-barrier semiconductor heterostructure was first proposed around 1990.
The combination of multiple heterojunctions together in a device is called a heterostructure although the two terms are commonly used interchangeably.
Geballe was involved in research in the then-upcoming field of multilayered heterostructure materials.
It has been used extensively for modelling semiconductor heterostructure devices such as quantum cascade lasers.
It took many years for the material science of heterostructure fabrication to catch up with Kroemer's ideas but now it is the industry standard.
Such a heterostructure was later named a quantum well, and the modes are the electron states of the quantum well.
Two-dimensional electron gas in an asymmetric quantum well (or heterostructure) will feel the Rashba interaction.
The differences in the effective diffusion rates for the two types of heterostructure are attributed to a different degree of interface mixing during growth.
Precision fabrication of tunnel heterostructure devices.
Buried heterostructure waveguides are efficient at removing heat from the QC active area when light is being produced.
This is accomplished by using heterostructure confinement in the emitter, introducing an energy barrier to minority-carrier charge flow from the base.
Such a design is called a separate confinement heterostructure (SCH) laser diode.