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Dive into the research topics where Paul D. Brabant is active.

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Featured researches published by Paul D. Brabant.


Meeting Abstracts | 2008

Throughput Considerations for In-Situ Doped Embedded Silicon Carbon Stressor Selectively Grown into Recessed Source Drain Areas of NMOS Devices

Matthias Bauer; Yangting Zhang; Doran Weeks; Paul D. Brabant; Joe P. Italiano; Vladimir Machkaoutsan; Shawn G. Thomas

In this paper we calculate throughput based on recipe overhead (chamber etch, wafer load, wafer bake, cool down, unload) and deposition time for “true” SEG or the core cycle time (deposition, purge, etch, purge times) for a CDE process. In the latter case an average, effective growth rate (GR) can be extracted by dividing the deposited thickness per cycle by the cycle time. In high volume manufacturing (HVM) high SEG GR are necessary for high throughput and low Cost of Ownership (CoO). High GR also enable high substitutional carbon levels [C]sub in dilute Si:C alloys. In this work all experiments were exclusively performed using Silcore (ASM trademarked version of Si3H8). Due to the high GR at low process temperature, high [C]sub and low films resistivities can be obtained independent of the two different Cl containing etch chemistries that were used in this study. The main challenge of using Cl2 compared to the ASM proprietary etch chemistry is the 25-30 times lower etch rate selectivity (~7 vs. ~190) of α-SiCP over epi-SiCP. As a result of the low etch rate selectivity using a Cl2 etch chemistry, a significant portion of the epitaxial SiC:P is also etched with the α-SiCP. This results in a low effective growth rate which has a deleterious impact to throughput.


Archive | 2002

Low temperature load and bake

Paul D. Brabant; Joe P. Italiano; Jianqing Wen


Archive | 2006

Selective deposition of silicon-containing films

Matthias Bauer; Chantal J. Arena; Ronald Bertram; Pierre Tomasini; Nyles Cody; Paul D. Brabant; Joe P. Italiano; Paul Jacobson; Keith Doran Weeks


Archive | 2004

Epitaxial semiconductor deposition methods and structures

Paul D. Brabant; Joe P. Italiano; Chantal J. Arena; Pierre Tomasini; Ivo Raaijmakers; Matthias Bauer


Archive | 2004

Enhanced selectivity for epitaxial deposition

Chantal J. Arena; Joe P. Italiano; Paul D. Brabant


Archive | 2005

Substrate support system for reduced autodoping and backside deposition

Matt Goodman; Jereon Stoutyesdijk; Ravinder Aggarwal; Mike Halpin; Tony J. Keeton; Mark R. Hawkins; Lee Haen; Armand P. Ferro; Paul D. Brabant; Robert M. Vyne; Gregory M. Bartlett; Joe P. Italiano; Bob Haro


Archive | 2004

Methods for depositing amorphous materials and using them as templates for epitaxial films by solid phase epitaxy

Michael A. Todd; Paul D. Brabant; Keith Doran Weeks; Jianqing Wen


Applied Surface Science | 2008

Hydrogen termination for extended queue times for low temperature epitaxy

Paul D. Brabant; J. Ferrara; B. Pagliaro; Keith Doran Weeks; M. Rittgers; R. Scott; Y. Zhang; Trevan Landin; T. Irving; J. Spear; Joe P. Italiano; S.G. Thomas


Archive | 2006

Purifier for chemical reactor

Paul D. Brabant; Paul Jacobson; Keith Doran Weeks


Archive | 2006

Relaxed heteroepitaxial layers

Keith Doran Weeks; Paul D. Brabant

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