Dennis M Newns  Dennis M Newns photo       

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Thomas J. Watson Research Center, Yorktown Heights, NY USA



High-response piezoelectricity modeled quantitatively near a phase boundary
D.M. Newns, M.A. Kuroda, F.S. Cipcigan, J. Crain, and G.J. Martyna
Appl. Phys. Lett.110, 022904, 2017

The Vision for Room Temperature Superconductivity
D.M. Newns, G.J. Martyna and C.C. Tsuei
SPIN7, 1750006, 2017


Cuprate High Temperature Superconductivity described by a field theory based on anharmonic oxygen degrees of freedom
J. Hsiao, G.J. Martyna and D.M. Newns
Phys. Rev. Lett.114, 107001, 2015

The piezoelectronic stress transduction switch for VLSI, low voltage sensor and radio frequency applications
I.-B. Magdu, X.-H. Liu, M.A. Kuroda, T.M. Shaw, J. Crain, P.M. Solomon, D.M. Newns and G.J. Martyna
Appl. Phys. Lett. 107, 073505, 2015


A low-voltage high-speed electronic switch based on piezoelectric transduction
Dennis Newns, Bruce Elmegreen, Xiao Hu Liu and Glenn Martyna
Appl. Phys.111, 084509, 2012

High Response Piezoelectric and Piezoresistive Materials for Fast, Low Voltage Switching
DM Newns, BG Elmegreen, X-H Liu, and GJ Martyna
Adv. Mat.24, 3672, 2012


Metal-semiconductor Transition in Phase-change Materials
D. Shakhvorostov et al.
PNAS106, 10907, 2009


Fluctuating Cu-O-Cu bond model of high-temperature superconductivity
D.M. Newns and C.C. Tsuei
Nature Physics3, 184, 2007


Mott transition Field Effect Transistor
D.M. Newns, J.A. Misewich, and C.C. Tsuei
Appl. Phys. Lett. 73, 780, 1998


Large-N Solution to the Kondo Problem
N. Read and D.M. Newns
J. Phys. C 16, 3273, 1983


A Self-consistent Model of Hydrogen Chemisorption
D.M. Newns
Phys. Rev.178, 1123, 1969