Industrial Applications of Ultrafast Lasers

Nonfiction, Science & Nature, Science, Physics, Spectrum Analysis, Solid State Physics, Optics
Cover of the book Industrial Applications of Ultrafast Lasers by Richard Haight, Adra V Carr, World Scientific Publishing Company
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Author: Richard Haight, Adra V Carr ISBN: 9789814569026
Publisher: World Scientific Publishing Company Publication: March 16, 2018
Imprint: WSPC Language: English
Author: Richard Haight, Adra V Carr
ISBN: 9789814569026
Publisher: World Scientific Publishing Company
Publication: March 16, 2018
Imprint: WSPC
Language: English

This book describes the application of ultrafast laser science and technology in materials and processing relevant to industry today, including ultrafast laser ablation where fundamental studies have led to the development of the world's first femtosecond photomask repair tool. Semiconductor manufacturing companies worldwide use the tool to repair photomask defects, saving hundreds of millions in production costs. The most up-to-date ultrafast laser technologies are described and methods to generate high harmonics for photoelectron spectroscopy of industrially important materials are covered, with an emphasis on practical laboratory implementation. Basic device physics merged with photoemission studies from single- and polycrystalline materials are described. Extensions to new methods for extracting key device properties of metal-oxide-semiconductor structures, including band offsets, effective work functions, semiconductor band bending and defect-related charging in a number of technologically important gate oxides are detailed. Polycrystalline photovoltaic materials and heterostructures as well as organic light emitting materials are covered. This book describes both the history, and most recent applications of ultrafast laser science to industrially relevant materials, processes and devices.

Contents:

  • Introduction
  • Ultrafast Laser Systems
  • High-Harmonic Generation with Femtosecond Light
  • Femtosecond Photoelectron Spectroscopy: Fundamentals and Electron Dynamics
  • Femtosecond Ablation and Mask Repair
  • Femtosecond Photovoltage Spectroscopy and Device Physics
  • Survey of Ultrafast Light Sources, Applications, and Final Thoughts

Readership: This book provides a basis for researchers and technologists interested in the applications of ultrafast lasers and as such will be relevant to a wide range of readers in both large and small industrial settings as well as materials science and engineering schools at universities.
Key Features:

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This book describes the application of ultrafast laser science and technology in materials and processing relevant to industry today, including ultrafast laser ablation where fundamental studies have led to the development of the world's first femtosecond photomask repair tool. Semiconductor manufacturing companies worldwide use the tool to repair photomask defects, saving hundreds of millions in production costs. The most up-to-date ultrafast laser technologies are described and methods to generate high harmonics for photoelectron spectroscopy of industrially important materials are covered, with an emphasis on practical laboratory implementation. Basic device physics merged with photoemission studies from single- and polycrystalline materials are described. Extensions to new methods for extracting key device properties of metal-oxide-semiconductor structures, including band offsets, effective work functions, semiconductor band bending and defect-related charging in a number of technologically important gate oxides are detailed. Polycrystalline photovoltaic materials and heterostructures as well as organic light emitting materials are covered. This book describes both the history, and most recent applications of ultrafast laser science to industrially relevant materials, processes and devices.

Contents:

Readership: This book provides a basis for researchers and technologists interested in the applications of ultrafast lasers and as such will be relevant to a wide range of readers in both large and small industrial settings as well as materials science and engineering schools at universities.
Key Features:

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