Atomic switches of metallic point contacts by plasmonic heating

[1]  Takhee Lee,et al.  Shaping the Atomic-Scale Geometries of Electrodes to Control Optical and Electrical Performance of Molecular Devices. , 2018, Small.

[2]  T. Schimmel,et al.  Macro-mechanics controls quantum mechanics: mechanically controllable quantum conductance switching of an electrochemically fabricated atomic-scale point contact , 2018, Nanotechnology.

[3]  S. J. van der Molen,et al.  Humidity-controlled rectification switching in ruthenium-complex molecular junctions , 2018, Nature Nanotechnology.

[4]  V. Fallahi Gate-controlled ballistic conductance of magnetic nanowires with double point contacts , 2017 .

[5]  Sungjoo Lee,et al.  High performance bi-layer atomic switching devices. , 2017, Nanoscale.

[6]  S. Haigh,et al.  Plasmon-induced nanoscale quantised conductance filaments , 2017, Scientific Reports.

[7]  Hai Zhu,et al.  Plasmonic metamaterial absorber for broadband manipulation of mechanical resonances , 2016, Nature Photonics.

[8]  Takhee Lee,et al.  Single-Atom Switches and Single-Atom Gaps Using Stretched Metal Nanowires. , 2016, ACS nano.

[9]  Feng Miao,et al.  Quantized conductance coincides with state instability and excess noise in tantalum oxide memristors , 2016, Nature Communications.

[10]  Chuancheng Jia,et al.  Molecular-Scale Electronics: From Concept to Function. , 2016, Chemical reviews.

[11]  Lin Wu,et al.  Quantum Plasmon Resonances Controlled by Molecular Tunnel Junctions , 2014, Science.

[12]  Dong F. Wang,et al.  Self-aligned formation of sub 1 nm gaps utilizing electromigration during metal deposition. , 2013, ACS applied materials & interfaces.

[13]  E. Scheer,et al.  A current-driven single-atom memory. , 2013, Nature nanotechnology.

[14]  J. Cuevas,et al.  Plasmon-Induced Conductance Enhancement in Single-Molecule Junctions , 2013 .

[15]  Peter Nordlander,et al.  Narrowband photodetection in the near-infrared with a plasmon-induced hot electron device , 2013, Nature Communications.

[16]  Qiang Li,et al.  A plasmon ruler based on nanoscale photothermal effect. , 2013, Optics express.

[17]  H. B. Weber,et al.  An electrostatic gate for mechanically controlled single-molecule junctions , 2012 .

[18]  Jeremy J. Baumberg,et al.  Revealing the quantum regime in tunnelling plasmonics , 2012, Nature.

[19]  Aeneas Wiener,et al.  Nonlocal effects in the nanofocusing performance of plasmonic tips. , 2012, Nano letters.

[20]  M. Caturla,et al.  Mechanical annealing of metallic electrodes at the atomic scale. , 2012, Physical review letters.

[21]  Wei Lu,et al.  The Study of Self-Heating and Hot-Electron Effects for AlGaN/GaN Double-Channel HEMTs , 2012, IEEE Transactions on Electron Devices.

[22]  Min Qiu,et al.  Nanosecond photothermal effects in plasmonic nanostructures. , 2012, ACS nano.

[23]  T. Hasegawa,et al.  Atomic Switch: Atom/Ion Movement Controlled Devices for Beyond Von‐Neumann Computers , 2012, Advanced materials.

[24]  P. Makk,et al.  From stochastic single atomic switch to nanoscale resistive memory device. , 2010, Nanoscale.

[25]  Y. Selzer,et al.  Response of molecular junctions to surface plasmon polaritons. , 2010, Angewandte Chemie.

[26]  W. Wenzel,et al.  Multilevel Atomic‐Scale Transistors Based on Metallic Quantum Point Contacts , 2010, Advanced materials.

[27]  Romain Quidant,et al.  Nanoscale control of optical heating in complex plasmonic systems. , 2010, ACS nano.

[28]  E. Marín,et al.  Characteristic dimensions for heat transfer , 2010 .

[29]  Yun Hee Jang,et al.  Observation of molecular orbital gating , 2009, Nature.

[30]  T. Bjørnholm,et al.  Molecular electronics with single molecules in solid-state devices. , 2009, Nature nanotechnology.

[31]  Christian A. Martin,et al.  A nanoelectromechanical single-atom switch. , 2009, Nano letters.

[32]  W. Wenzel,et al.  Independently switchable atomic quantum transistors by reversible contact reconstruction. , 2008, Nano letters.

[33]  M. Calame,et al.  Feedback controlled electromigration in four-terminal nanojunctions , 2007, cond-mat/0703649.

[34]  Arun Majumdar,et al.  Thermoelectricity in Molecular Junctions , 2007, Science.

[35]  O. Martin,et al.  Resonant Optical Antennas , 2005, Science.

[36]  Z. Tian,et al.  Controllable nanogap fabrication on microchip by chronopotentiometry , 2005 .

[37]  K. Terabe,et al.  Quantized conductance atomic switch , 2005, Nature.

[38]  C. Schönenberger,et al.  Electrical conductance of atomic contacts in liquid environments. , 2004, Small.

[39]  S. J. van der Molen,et al.  One-way optoelectronic switching of photochromic molecules on gold. , 2003, Physical review letters.

[40]  Yuyuan Tian,et al.  Measurement of Single-Molecule Resistance by Repeated Formation of Molecular Junctions , 2003, Science.

[41]  Jan M. van Ruitenbeek,et al.  Quantum properties of atomic-sized conductors , 2002, cond-mat/0208239.

[42]  C. Muller,et al.  Experimental observation of the transition from weak link to tunnel junction , 1992 .

[43]  H. L. Thomas The Concept of Function. , 1971 .