Könyv Molecular Beam Epitaxy Mohamed Henini

Molecular Beam Epitaxy

Szerző: Mohamed Henini
Nyelv: Angol
Kötés: Kemény kötésű
Elérhetőség: Kiadói készleten rendelésre
Küldés 28-34 napon belül
64 558 Ft
This multi-contributor handbook discusses Molecular Beam Epitaxy (MBE), an epitaxial deposition tech...

Információk a könyvről

Szerző
Nyelv
Angol
Kötés
Könyv - Kemény kötésű
Kiadva
2012
oldal
744
EAN
9780123878397
ISBN
012387839X
Enbook ID
02703647
Súly
1904
Méretek
222 x 279 x 34

Teljes leírás

This multi-contributor handbook discusses Molecular Beam Epitaxy (MBE), an epitaxial deposition technique which involves laying down layers of materials with atomic thicknesses on to substrates. It summarizes MBE research and application in epitaxial growth with close discussion and a 'how to' on processing molecular or atomic beams that occur on a surface of a heated crystalline substrate in a vacuum. MBE has expanded in importance over the past thirty years (in terms of unique authors, papers and conferences) from a pure research domain into commercial applications (prototype device structures and more at the advanced research stage). MBE is important because it enables new device phenomena and facilitates the production of multiple layered structures with extremely fine dimensional and compositional control. The techniques can be deployed wherever precise thin-film devices with enhanced and unique properties for computing, optics or photonics are required. This book covers the advances made by MBE both in research and mass production of electronic and optoelectronic devices. It includes new semiconductor materials, new device structures which are commercially available, and many more which are at the advanced research stage. This title: condenses fundamental science of MBE into a modern reference, speeding up literature review; discusses new materials, novel applications and new device structures, grounding current commercial applications with modern understanding in industry and research; and, features coverage of MBE as mass production epitaxial technology, enhances processing efficiency and throughput for semiconductor industry and nanostructured semiconductor materials research community.

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