Advanced gate stacks for high-mobility semiconductors

Author(s)

    • Dimoulas, A. (Athanasios)

Bibliographic Information

Advanced gate stacks for high-mobility semiconductors

A. Dimoulas ... [et al.] (eds.)

(Advanced microelectronics, 27)

Springer, c2007

  • hbk.

Available at  / 2 libraries

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Note

Includes bibliographical references and index

Description and Table of Contents

Description

This book provides a comprehensive monograph on gate stacks in semiconductor technology. It covers the major latest developments and basics and will be useful as a reference work for researchers, engineers and graduate students alike. The reader will get a clear view of what has been done so far, what is the state-of-the-art and which are the main challenges ahead before we come any closer to a viable Ge and III-V MOS technology.

Table of Contents

Strained-Si CMOS Technology.- High Current Drivability MOSFET Fabricated on Si(110) Surface.- Advanced High-Mobility Semiconductor-on-Insulator Materials.- Passivation and Characterization of Germanium Surfaces.- Interface Engineering for High-? Ge MOSFETs.- Effect of Surface Nitridation on the Electrical Characteristics of Germanium High-?/Metal Gate Metal-Oxide-Semiconductor Devices.- Modeling of Growth of High-? Oxides on Semiconductors.- Physical, Chemical, and Electrical Characterization of High-? Dielectrics on Ge and GaAs.- Point Defects in Stacks of High-? Metal Oxides on Ge: Contrast with the Si Case.- High ? Gate Dielectrics for Compound Semiconductors.- Interface Properties of High-? Dielectrics on Germanium.- A Theoretical View on the Dielectric Properties of Crystalline and Amorphous High-? Materials and Films.- Germanium Nanodevices and Technology.- Opportunities and Challenges of Germanium Channel MOSFETs.- Germanium Deep-Submicron p-FET and n-FET Devices, Fabricated on Germanium-On-Insulator Substrates.- Processing and Characterization of III-V Compound Semiconductor MOSFETs Using Atomic Layer Deposited Gate Dielectrics.- Fabrication of MBE High-? MOSFETs in a Standard CMOS Flow.

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