Tuesday, July 1, 2008

Wei Liu - Tutorial

Wei Liu will be holding a tutorial during the Nano-Net conference.

Here is the updated biography for Wei Liu. Apparently, there's another Wei Liu in the same department and this is a common confusion, so here's who you'll meet when you attend the conference!

Wei Lu received the B.S. degree in physics from Tsinghua University, Beijing, China, in 1996, and the M.A. and Ph.D. in physics from Rice University, Houston, TX in 1999 and 2003, respectively. From 2003 to 2005, he was a postdoctoral research fellow at Harvard University, Cambridge, MA. In 2005, he joined the faculty of the Electrical Engineering and Computer Science Department at the University of Michigan as an assistant professor. His research interests lie in the application and fundamental understanding of nanostructures and nanodevices, including high-density crossbar memory and logic devices, semiconductor nanowire based transistors and sensors, flexible and transparent thin-film electronics, and nano-electromechanical systems. He has over 20 refereed journal publications and 3 patents, served as a reviewer and on the editorial board for 17 journals, and he is an active member in several international committees worldwide. He is a member of the IEEE, APS, MRS, and a board member of the AVS Michigan Chapter. He received the Wilson Award in 2003.

Also, the abstract and outline for the tutorial are now posted on http://www.nanonets.org/tutorial.shtml

Abstract
One-dimensional nanostructures such as carbon nanotubes and nanowires have attracted considerable interest recently due to their unique electrical and structural properties. In this course, we will discuss some of the most important aspects of CNT based electronics, from the bandstructure to fundamental transport characterizations to high performance transistors. In addition, the one-dimensional systems are attractive to novel architectures such as crossbar memories and logic that offer large connectivity and reconfigurability and are suitable for neuromorphic computing. Several nanotube and nanowire-based crossbar systems will be discussed.
Prerequisites: none

Outline
Part I: Carbon nanotubes:

  • Brief history
  • growth techniques
  • band structure and electrical properties
  • ballistic waveguides and cables
  • field-effect transistors
  • noise in CNT devices
  • thin-film devices
Part II: CNT and nanowire-based crossbar networks

  • CNT crossbar memory
  • nanowires – brief introduction
  • nanowire two-terminal resistive switches (memristors)
  • CMOS compatible nano-crossbar systems

Monday, June 23, 2008

Conference Dates Clarification

Extended Submission Deadline:
June 15, 2008 (Regular/Invited) & July 15, 2008 (2-page Short)

Acceptance Notification:
July 7, 2008 (Regular/Invited) & July 21, 2008 (2-page Short)

Camera-Ready Versions:
July 31, 2008

Nano-Net Conference:
Sept. 15-17, 2008

Monday, June 9, 2008

2 Page Short Papers in Call for Papers

The call for papers located on http://www.nanonets.org/cfp.shtml now includes 2 page short papers in addition to the 5 page paper submissions and 8 page invited papers submissions. Also, please note the extended deadline of JULY 15, 2008.

~Damira (Nano-Net 2008 Webmaster)

Neil Gershenfeld Keynote Abstract Posted

As we have posted earlier, we are proud to have Neil Gershenfeld the Director of The Center for Bits and Atoms at MIT as one of our keynote speakers. The abstract for his keynote talk is now available at http://www.nanonets.org/keynote.shtml



TITLE: Programming Bits and Atoms

ABSTRACT: Software has served to isolate programs (and programmers) from knowledge of the underlying physical mechanisms used for computation. However, device scaling is leading to a limit in which the number of information-bearing degrees of freedom becomes comparable to the number of physical ones. At that point it will no longer be possible to distinguish between computer science and physical science, because they will be describing the same attributes. The density, velocity, and interaction of information is coupled by physical law; the same must be true of scalable models for computation and communications. I will explore the benefits of exposing rather than hiding the boundary between bits and atoms, including interdevice internetworking, conformal computing architectures, mathematical programming models, and digital fabrication processes.

Monday, May 19, 2008

Keynote Speaker - Neil Gershenfeld

We are pleased to announce our newest confirmed keynote speaker, Professor Neil Gershenfeld. NEIL GERSHENFELD is the Director of MIT's Center for Bits and Atoms. His unique laboratory is breaking down boundaries between the digital and physical worlds, from creating molecular quantum computers to virtuosic musical instruments. Technology from his lab has been seen and used in settings including New York's Museum of Modern Art and rural Indian villages, the White House and the World Economic Forum, inner-city community centers and automobile safety systems, Las Vegas shows and Sami herds.

He is the author of numerous technical publications, patents, and books including Fab, When Things Start To Think, The Nature of Mathematical Modeling, and The Physics of Information Technology, and has been featured in media such as The New York Times, The Economist, and the McNeil/Lehrer News Hour.
He is a Fellow of the American Physical Society, and has been selected as a CNN/Time/Fortune Principal Voice and by Prospect/FP as one of the top 100 public intellectuals.
Dr. Gershenfeld has a BA in Physics with High Honors and an honorary Doctor of Science from Swarthmore College, a Ph.D. from Cornell University, was a Junior Fellow of the Harvard University Society of Fellows, and a member of the research staff at Bell Labs.

His keynote title and abstract information will be released shortly.
See http://www.nanonets.org/keynote.shtml for more information on our keynotes.

~Damira (Nano-Net Webmaster)

Sunday, May 18, 2008

Call for Papers DEADLINE EXTENDED!

The Call For Papers Deadline has been EXTENDED from May 15, 2008 to June 15, 2008 to allow for additional submissions. Please see http://www.nanonets.org/cfp.shtml for additional details as well as a .doc and plain text version of the CFP. We ask all Technical Program Committee members to advertise the Call For Papers with the new deadline once it is finalized.

~Damira (Nano-Net 2008 Webmaster)

Keynote Tatsuya Suda Presentation Title and Abstract Now Up

Keynote speaker Tatsuya Suda's presentation title and abstract are now available at: http://www.nanonets.org/keynote.shtml.

Molecular Communication: A New Paradigm for Communication Among Biological Nanomachines

Molecular communication is a new paradigm for nano-scale communication between biological or artificial nanomachines (artificial or biological nano-scale devices that perform simple computation, sensing, or actuation). Molecular communication applies the nano and micro-scale communication mechanisms from biological systems to allow nanomachines to communicate by using molecules as a communication carrier over a short distance.

Nanomachines that communicate may achieve tasks that cannot be accomplished by a single nanomachine and can spur the creation of entirely new applications. Such applications may include distributed computing through communicating nanomachines that function as basic logic gates and human health monitoring through communicating nanomachines that act as implant devices monitoring molecules and conditions in a human body.

The class of molecular communication systems considered in this presentation consists of sender nanomachines, receiver nanomachines, carrier molecules, and the environment that these operate in. Senders and receivers include biological (such as cells) and biologically derived (such as molecular motors or sensors taken from biological systems) nanomachines that are capable of emitting and capturing carrier molecules (such as proteins, ions, or DNA). The environment is the aqueous solution that is typically found within and between cells.

This presentation explains initial ideas for molecular communication. This presentation also covers basic communication processes in molecular communication and key system components that form a molecular communication system. It also illustrates research issues necessary to create molecular communication.

Tuesday, May 6, 2008

Yaakov (Kobi) Benenson - new TPC member

We are pleased to announce another TPC member, Yaakov (Kobi) Benenson from Harvard. He has a Ph.D. from the Departments of Computer Science & Applied Mathematics and Biological Chemistry of the Weizmann Institute of Science, Israel. He is involved in the Laboratory for Molecular Automata and the FAS Center for Systems Biology at Harvard University. He is currently the Principal Investigator for a grant titled: "Synthetic implementation of biological control modules" and participates as a program committee member in several conferences including the International Meeting on DNA-Based Computers and the
International Conference on Computational Intelligence, Robotics and Autonomous Systems.