Pulsed-Power Systems describes the physical and technical foundations for the production and application of high-voltage pulses of very high-power and high-energy character. In the initial chapters, it addresses materials, components and the most common diagnostics. In the second part, three categor
Pulsed and Pulsed Bias Sputtering: Principles and Applications
โ Scribed by Edward V. Barnat, Toh-Ming Lu (auth.)
- Publisher
- Springer US
- Year
- 2003
- Tongue
- English
- Leaves
- 151
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Diffusion Barrier Stack - 5 nm -3 nm -2 nm :. . . -. . . . : . . O. 21-lm Figure 2: Schematic representing a cross-sectional view of the topography that is encountered in the processing of integrated circuits. (Not to scale) these sub-micron sized features is depicted in Fig. 2. The role of the diffusion barrier is to prevent the diffusion of metallic ions into the interlayer dielectric (lLD). Depending on the technology, in particular the choice of the ILD and the metal interconnect, the diffusion barrier may be Ti, Ta, TiN, TaN, or a multi-layered structure of these materials. The adhesion of the barrier to the dielectric, the conformality of the barrier to the feature, the physical structure of the film, and the chemical composition of the film are key issues that are determined in part by the nature of the deposition process. Likewise, after the growth of the barrier, a conducting layer (the seed layer) is needed for subsequent filling of the trench by electrochemical deposition. Again, the growth process must be able to deposit a film that is continuous along the topography of the sub-micron sized features. Other factors of concern are the purity and the texture of the seed layer, as both of these factors influence the final resistivity of the metallic interconnect. Sputter-deposited coatings are also commonly employed for their electro-optical properties. For example, an electrochromic glazing is used to control the flux of light that is transmitted through a glazed material.
โฆ Table of Contents
Front Matter....Pages i-xi
Introduction....Pages 1-10
Basic Plasma Phenomenon....Pages 11-27
Plasma Sources used for Sputter Deposition....Pages 29-43
Response of a Plasma to an Applied Bias....Pages 45-63
Sinusoidal Waveform....Pages 65-73
Pulsed Waveform....Pages 75-107
Application of a Pulsed Waveform to a Target: Pulsed Reactive Sputtering....Pages 109-128
Applications of a Pulsed Waveform to a Substrate: Pulsed Bias Sputtering....Pages 129-144
Conclusion and Future Directions....Pages 145-147
Back Matter....Pages 149-157
โฆ Subjects
Optical and Electronic Materials; Surfaces and Interfaces, Thin Films; Physical Chemistry; Polymer Sciences
๐ SIMILAR VOLUMES
<p><P><STRONG>Pulsed-Power Systems</STRONG> describes the physical and technical foundations for the production and application of high-voltage pulses of very high-power and high-energy character. In the initial chapters, it addresses materials, components and the most common diagnostics. In the sec
<p><span>Pulsed-Power Systems describes the physical and technical foundations for the production and application of high-voltage pulses of very high-power and high-energy character. In the initial chapters, it addresses materials, components and the most common diagnostics. In the second part, thre
<P>Pulsed-Power Systems describes the physical and technical foundations for the production and application of high-voltage pulses of very high-power and high-energy character. In the initial chapters, it addresses materials, components and the most common diagnostics. In the second part, three cate
Pulsed-Power Systems describes the physical and technical foundations for the production and application of high-voltage pulses of very high-power and high-energy character. In the initial chapters, it addresses materials, components and the most common diagnostics. In the second part, three categor
This book is a practitioner's guide to all aspects of pulse Doppler radar. It concentrates on airborne military radar systems since they are the most used, most complex, and most interesting of the pulse Doppler radars; however, ground-based and non-military systems are also included. It covers the