Examples of 'molecular beam' in a sentence

Meaning of "molecular beam"

Molecular beam - A technique used in physics and chemistry involving the production and manipulation of a beam of neutral molecules

How to use "molecular beam" in a sentence

Basic
Advanced
molecular beam
Molecular beam epitaxy is an advanced form of thermal evaporation.
Growth is performed by the molecular beam epitaxy technique.
Molecular beam epitaxial growth equipment.
Such a structure can be produced by molecular beam epitaxy.
Molecular beam epitaxy was used in the very beginning.
It may be a molecular beam epitaxy.
In particular said heterostructure can be realized by molecular beam epitaxy.
Molecular beam mass spectrometers having either of the following characteristics.
They were found in many samples grown by molecular beam epitaxy.
Molecular beam epitaxy apparatus for producing wafers of semiconductor material.
The title reaction has been studied in a crossed molecular beam apparatus.
Development of molecular beam technique with application of laser ablation of metal amalgams.
Samples studied in this work have been grown by molecular beam epitaxy.
Molecular beam epitaxy is a method permitting the preparation of films of numerous materials.
The wires are made on the basis of GaN by molecular beam epitaxy.

See also

Scientists employed the molecular beam epitaxy method to fabricate crystalline semiconductor materials.
This invention pertains to the field of molecular beam epitaxy equipment.
Detail of a Molecular Beam Epitaxy system for gallium nitride epitaxy.
A number of ZnSe samples grown using molecular beam epitaxy were tested.
Molecular beam epitaxial growth equipment using gas or solid sources ;.
The stack is grown on the substrate by molecular beam epitaxy for example.
Molecular beam mass spectrometers having both of the following characteristics,.
The substrate assembly is immediately loaded into the molecular beam epitaxy system.
The present invention relates to a molecular beam epitaxy apparatus for producing wafers of semiconductor material.
Silicon is advantageously chosen as the dopant when using the technique of molecular beam epitaxy.
The MBE process comprises projecting a molecular beam of reactant species at the surface of a substrate.
ICLs are fabricated from semiconductor heterostructures grown using molecular beam epitaxy MBE.
Figure 1 represents a molecular beam epitaxy apparatus according to an embodiment of the invention ;.
The growth were achieved by plasma-assisted molecular beam epitaxy.
The molecular beam epitaxy apparatus comprises a growth chamber 1 surrounding a process área 2.
Another variation of the bottom-up approach is molecular beam epitaxy.
Use is e.g. made of the molecular beam epitaxy method for forming said absorbing layer.
Structural, electrical and magnetic characterization of cdmnte obtained by molecular beam epitaxy.
Metal-organic molecular beam epitaxy.
QDs are formed in Stransky-Krastanow growth mode by molecular beam epitaxy.
The technique known as molecular beam epitaxy ( MBE ) can be also used.
The very thin heterostructures were made by W. Wiegmann using molecular beam epitaxy.
FIG . 4 is a machine for molecular beam epitaxy fitted with a device of the invention ; and.
The term CBE is often used interchangeably with metal-organic molecular beam epitaxy MOMBE.
Metal organic molecular beam epitaxy ( MOMBE ).
Preparation, characterization and technological application of molecular surfaces i.e. Langmuir-Blodgett films, molecular beam methods.
The DBR 's can be grown by molecular beam epitaxy MBE.
The molecular beam is formed at the level of an annular zone ( 6 ) surrounding the plate ( 3 ).
The investigated structures were synthesized using plasma-assisted molecular beam epitaxy ( PAMBE ).
FIG . 1 shows a molecular beam epitaxy reactor ; and.
Key words, ultrathin metallic magnetic films, magnetic anisotropy, exchange interaction, Molecular Beam Epitaxy.
This invention relates to a reagent source for molecular beam epitaxy, often known as " MBE ".
He is director of the RIBER-INL joint laboratory on oxide molecular beam epitaxy since 2013.
Nobel laureate Yuan T. Lee ( PhD 1965 ) developed the crossed molecular beam technique for studying chemical reactions.
The first film 11F may be formed by crystal growth using molecular beam epitaxy ( MBE ), etc.

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