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Materials Issues and Modeling for Device Nanofabrication:

Materials Issues and Modeling for Device Nanofabrication: PDF Author: Lhadi Merhari
Publisher: Cambridge University Press
ISBN: 9781107414174
Category : Technology & Engineering
Languages : en
Pages : 360

Book Description
The exploding market of information technology requires ultrahigh-speed integrated circuits, which imposes formidable challenges in terms of nanofabrication, advanced materials, atomic-scale measurements and modeling. The enormous costs of next-generation lithographic machines to mass produce integrated circuits with sub-100nm resolution justify alternative approaches where the use of advanced materials and techniques for nanofabrication, including epitaxial growth and their powerful modeling, can lead to more cost-effective strategies. This book contains the proceedings of two symposia held at the 1999 MRS Fall Meeting in Boston that address these issues - Advanced Materials and Techniques for Nanolithography, and Atomic-Scale Measurements and Atomistic Models of Epitaxial Growth and Lithography. The reader will find an overview of the state of the art, both theoretical and experimental in this technologically important field. Topics include: advanced techniques for sub-100nm resolution lithography and molecular electronics; epitaxial growth and morphology; novel concepts of resists for nanolithography; atomic-scale characterization and measurement; modeling and atomistic simulations; and nanodevices and nanostructures.

Materials Issues and Modeling for Device Nanofabrication:

Materials Issues and Modeling for Device Nanofabrication: PDF Author: Lhadi Merhari
Publisher: Cambridge University Press
ISBN: 9781107414174
Category : Technology & Engineering
Languages : en
Pages : 360

Book Description
The exploding market of information technology requires ultrahigh-speed integrated circuits, which imposes formidable challenges in terms of nanofabrication, advanced materials, atomic-scale measurements and modeling. The enormous costs of next-generation lithographic machines to mass produce integrated circuits with sub-100nm resolution justify alternative approaches where the use of advanced materials and techniques for nanofabrication, including epitaxial growth and their powerful modeling, can lead to more cost-effective strategies. This book contains the proceedings of two symposia held at the 1999 MRS Fall Meeting in Boston that address these issues - Advanced Materials and Techniques for Nanolithography, and Atomic-Scale Measurements and Atomistic Models of Epitaxial Growth and Lithography. The reader will find an overview of the state of the art, both theoretical and experimental in this technologically important field. Topics include: advanced techniques for sub-100nm resolution lithography and molecular electronics; epitaxial growth and morphology; novel concepts of resists for nanolithography; atomic-scale characterization and measurement; modeling and atomistic simulations; and nanodevices and nanostructures.

Materials Issues and Modeling for Device Nanofabrication, Volume 584, Held November 29-December 2, 1999, Boston, Massachusetts, USA.

Materials Issues and Modeling for Device Nanofabrication, Volume 584, Held November 29-December 2, 1999, Boston, Massachusetts, USA. PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
The exploding market of information technology requires ultra-high-speed integrated circuits, which imposes formidable challenges in terms of nanofabrication, advanced materials, atomic scale measurements and modeling. The enormous costs of next-generation lithographic machines to mass produce integrated circuits with sub-100 nm resolution justify alternative approaches where the use of advanced materials and techniques for nanofabrication including epitaxial growth, and their powerful modeling, can lead to more cost-effective strategies. This volume contains most of the papers that were presented during Symposium J, "Advanced Materials and Techniques for Nanolithography," and Symposium N, "Atomic Scale Measurements and Atomistic Models of Epitaxial Growth and Lithography," at the 1999 MRS Fall Meeting in Boston, Massachusetts. Because of the complementary nature of the two subject matters, particularly in their applicability to device nanofabrication, it was felt that a combined proceedings volume offered the best way to present the findings in a unified and comprehensive manner. The editors trust that the reader will find here a nice overview of the state of the art, both theoretical and experimental, as well as an indication of the future trends and remaining challenges in this technologically important field.

Materials Issues and Modeling for Device Nanofabrication: Volume 584

Materials Issues and Modeling for Device Nanofabrication: Volume 584 PDF Author: Lhadi Merhari
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 368

Book Description
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Thin Films

Thin Films PDF Author:
Publisher:
ISBN:
Category : Thin films
Languages : en
Pages : 576

Book Description


Ferroelectric Thin Films

Ferroelectric Thin Films PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 608

Book Description


Substrate Engineering--paving the Way to Epitaxy

Substrate Engineering--paving the Way to Epitaxy PDF Author: David Norton
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 244

Book Description
Epitaxial growth has always been a marriage of convenience between film and substrate. More and more frequently, however, it is impractical to use the same material for both film and substrate because it is not available as large single crystals, it is prohibitively expensive, or its properties are ill-suited for the intended application. To meet these challenges, many strategies have been pursued to achieve highly oriented or single-crystal thin films via epitaxy. Crystalline films have been mechanically bonded to other materials to form composite substrates. Crystals have been cut and rewelded, patterned and regrown, buffer layered and repolished. Each strategy has met with fundamental challenges including lattice mismatch, chemical incompatibility, differences in thermal expansion, and structural dissimilarity. This book, first published in 2000, focuses on developments in novel substrate engineering which enable improved epitaxy. Topics include: biaxially textured substrates for high-Tc-coated conductors; surfaces for oxide epitaxy; wafer bonding and lift off; lattice mismatch engineering; substrate engineering and solid-phase recrystallization and epitaxy.

Nanophase and Nanocomposite Materials

Nanophase and Nanocomposite Materials PDF Author:
Publisher:
ISBN:
Category : Composite materials
Languages : en
Pages : 738

Book Description


Materials for Smart Systems

Materials for Smart Systems PDF Author:
Publisher:
ISBN:
Category : Detectors
Languages : en
Pages : 384

Book Description


Materials Development for Direct Write Technologies: Volume 624

Materials Development for Direct Write Technologies: Volume 624 PDF Author: Douglas B. Chrisey
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 312

Book Description
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

The Granular State: Volume 627

The Granular State: Volume 627 PDF Author: Surajit Sen
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 338

Book Description
These 38 papers from the April 2000 symposium study granular structure, granular flows, nonlinear waves in granular media, vibrated and rotated granular media, and stress distributions. Topics include jamming in liquids and granular materials, nuclear magnetic resonance studies of granular flows, the blueprint of a concept for a nozzle- free inkjet printer, mixing and segregation processes in a Turbula blender, persistence of granular structure during die compaction of ceramic powders, and humidity-induced cohesion effects in granular media. c. Book News Inc.