2005 itrs public conference pids itwg emerging research materials munich germany april 13 2005 n.
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2005 ITRS Public Conference PIDS ITWG Emerging Research Materials Munich, Germany April 13, 2005 PowerPoint Presentation
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2005 ITRS Public Conference PIDS ITWG Emerging Research Materials Munich, Germany April 13, 2005. Jim Hutchby – SRC Mike Garner – Intel. ERM Participants. Dimitri Antoniadis MIT Marc Baldo                MIT Karl Berggren           MIT Charles Black IBM Dawn Bonnell Penn. Univ.

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erm participants
ERM Participants

Dimitri Antoniadis MIT

Marc Baldo                MIT

Karl Berggren           MIT

Charles Black IBM

Dawn Bonnell Penn. Univ.

Alex Bratkovski HP

George Bourianoff Intel

John Carruthers Port. St. Univ.

Sang Wook Cheong Rutgers Univ

Supriyo Datta Purdue Univ.

Alex Demkov U. Texas

Steve Erwin NRL

M. Garner Intel, Chair

Bruno Ghyselen SOITECH

Dan Herr SRC

Susan Holl Intel

Jim Hutchby SRC

Berry Jonker NRL

Gerhard Klemick Purdue Univ.

Ted Kamins HP

Richard Keihl U. Wisc.

Phil Kuekes HP

Louis Lome IDA Cons.

Mark Lundstrom Purdue

Kathryn Moler Stanford U.

David Muller Cornell U.

Ramamoorthy Ramesh UCB

Mark Reed Yale Univ.

Rafael Reif MIT

Dave Robert Air Products

Morley Stone DARPA

Sadasivan Shankar Intel

Shinichi Tagaki U of Tokyo

Tom Theis IBM

Jim Tour Rice Univ.

Ruud Tromp IBM

JohnHenry Scott NIST

Eric Vogel NIST

Victor Zhirnov SRC

Igor Zutic NRL

Kang Wang UCLA

Rainer Waser Aacken U.

Stan Williams HP

In Kyeong Yoo Samsung

erm workshops
Critical Properties (MIT) Feb 15, ’05

1D Charge State Materials* Feb. 4, ’05

1D Charge State Models* Feb. 17, ’05

Molecular State* Feb. 25, ’05

Locally ordered solid state* Mar. 29, ’05

Spin State Materials * Mar. 30, ‘05

ERM Workshops

* Teleconference

devices material interplay

Gate

S

D

Devices & Material Interplay

Device Concept

Determines Material Properties

Material properties

optimized for device

Critical Properties = Properties for Device Operation

Example: CNT DOS, Eg & meff f(chirality & diameter)

Critical Material Functional Properties Material Properties

strategic thrust
1D charge state materials

Molecular state materials

Coupled dipole-spin state materials

Self-assembly mechanisms

Increased collaboration between synthesis, metrology and modeling

University, Gov’t, National Labs & Industry

Strategic Thrust