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Have you ever puzzled over how to perform Boolean logic at the atomic scale? Or wondered how you can carry out more general calculations in one single molecule or using a surface dangling bond atomic scale circuit? This volume gives you an update on the design of single molecule devices, such as recitfiers, switches and transistors, more advanced semi-classical and quantum boolean gates integrated in a single molecule or constructed atom by atom on a passivated semi-conductor surface and describes their interconnections with adapted nano-scale wiring. The main contributors to the field of single molecule logic gates and surface dangling bond atomic scale circuits theory and design, were brought together for the first time to contribute on topics such as molecule circuits, surface dangling bond circuits, quantum controlled logic gates and molecular qubits. Contributions in this volume originate from the Barcelona workshop of the AtMol conference series, held from January 12-13 2012.




Have you ever puzzled over how to perform Boolean logic at the atomic scale? Or wondered how you can carry out more general calculations in one single molecule or using a surface dangling bond atomic scale circuit? This volume gives you an update on the design of single molecule devices, such as recitfiers, switches and transistors, more advanced semi-classical and quantum boolean gates integrated in a single molecule or constructed atom by atom on a passivated semi-conductor surface and describes their interconnections with adapted nano-scale wiring. The main contributors to the field of single molecule logic gates and surface dangling bond atomic scale circuits theory and design, were brought together for the first time to contribute on topics such as molecule circuits, surface dangling bond circuits, quantum controlled logic gates and molecular qubits. Contributions in this volume originate from the Barcelona workshop of the AtMol conference series, held from January 12-13 2012.




Have you ever puzzled over how to perform Boolean logic at the atomic scale? Or wondered how you can carry out more general calculations in one single molecule or using a surface dangling bond atomic scale circuit? This volume gives you an update on the design of single molecule devices, such as recitfiers, switches and transistors, more advanced semi-classical and quantum boolean gates integrated in a single molecule or constructed atom by atom on a passivated semi-conductor surface and describes their interconnections with adapted nano-scale wiring. The main contributors to the field of single molecule logic gates and surface dangling bond atomic scale circuits theory and design, were brought together for the first time to contribute on topics such as molecule circuits, surface dangling bond circuits, quantum controlled logic gates and molecular qubits. Contributions in this volume originate from the Barcelona workshop of the AtMol conference series, held from January 12-13 2012.


Content:
Front Matter....Pages i-ix
Front Matter....Pages 11-11
Towards Post-CMOS Molecular Logic Devices....Pages 13-24
Quantum Interference Effects in Electron Transport: How to Select Suitable Molecules for Logic Gates and Thermoelectric Devices....Pages 25-39
Mapping Electron Transport Pathways in Complex Systems....Pages 41-53
Switching Mechanisms for Single-Molecule Logic Gates....Pages 55-69
PTM Radicals for Molecular-Based Electronic Devices....Pages 71-85
Vibrational Heating in Single-Molecule Switches....Pages 87-96
Heat Dissipation in Molecular Junctions: Linking Molecules to Macroscopic Contacts....Pages 97-106
Front Matter....Pages 107-107
Classical Logic in a Single Molecule....Pages 109-121
Modeling and Simulation of Electron Transport at the Nanoscale: Illustrations in Low-Dimensional Carbon Nanostructures....Pages 123-133
Front Matter....Pages 135-135
First-Principles Simulations of Electronic Transport in Dangling-Bond Wires....Pages 137-147
Dangling-Bond Logic: Designing Boolean Logic Gates on a Si(001)-(2x1):H Surface....Pages 149-162
Dangling-Bond Wire Circuits on a Si(001)-(2x1):H Surface with Their Contacting Nanopads....Pages 163-174
Theory of Inelastic Transport Through Atomic Surface Wires....Pages 175-185
Front Matter....Pages 187-187
Single Molecule Can Calculate 1,000 Times Faster than Supercomputers....Pages 189-193
Realization of Complex Logic Operations at the Nanoscale....Pages 195-220
Binary Full-Adder in a Single Quantum System....Pages 221-234
Front Matter....Pages 235-235
A Controlled Quantum SWAP Logic Gate in a 4-center Metal Complex....Pages 237-247
Artificial Molecular Nanomagnets as Spin-Based Quantum Logic Gates....Pages 249-266
Toward a Molecular Ion Qubit....Pages 267-277
Architecture at the End of Moore....Pages 1-10
Implementing Quantum Gates and Algorithms in Ultracold Polar Molecules....Pages 279-290


Have you ever puzzled over how to perform Boolean logic at the atomic scale? Or wondered how you can carry out more general calculations in one single molecule or using a surface dangling bond atomic scale circuit? This volume gives you an update on the design of single molecule devices, such as recitfiers, switches and transistors, more advanced semi-classical and quantum boolean gates integrated in a single molecule or constructed atom by atom on a passivated semi-conductor surface and describes their interconnections with adapted nano-scale wiring. The main contributors to the field of single molecule logic gates and surface dangling bond atomic scale circuits theory and design, were brought together for the first time to contribute on topics such as molecule circuits, surface dangling bond circuits, quantum controlled logic gates and molecular qubits. Contributions in this volume originate from the Barcelona workshop of the AtMol conference series, held from January 12-13 2012.


Content:
Front Matter....Pages i-ix
Front Matter....Pages 11-11
Towards Post-CMOS Molecular Logic Devices....Pages 13-24
Quantum Interference Effects in Electron Transport: How to Select Suitable Molecules for Logic Gates and Thermoelectric Devices....Pages 25-39
Mapping Electron Transport Pathways in Complex Systems....Pages 41-53
Switching Mechanisms for Single-Molecule Logic Gates....Pages 55-69
PTM Radicals for Molecular-Based Electronic Devices....Pages 71-85
Vibrational Heating in Single-Molecule Switches....Pages 87-96
Heat Dissipation in Molecular Junctions: Linking Molecules to Macroscopic Contacts....Pages 97-106
Front Matter....Pages 107-107
Classical Logic in a Single Molecule....Pages 109-121
Modeling and Simulation of Electron Transport at the Nanoscale: Illustrations in Low-Dimensional Carbon Nanostructures....Pages 123-133
Front Matter....Pages 135-135
First-Principles Simulations of Electronic Transport in Dangling-Bond Wires....Pages 137-147
Dangling-Bond Logic: Designing Boolean Logic Gates on a Si(001)-(2x1):H Surface....Pages 149-162
Dangling-Bond Wire Circuits on a Si(001)-(2x1):H Surface with Their Contacting Nanopads....Pages 163-174
Theory of Inelastic Transport Through Atomic Surface Wires....Pages 175-185
Front Matter....Pages 187-187
Single Molecule Can Calculate 1,000 Times Faster than Supercomputers....Pages 189-193
Realization of Complex Logic Operations at the Nanoscale....Pages 195-220
Binary Full-Adder in a Single Quantum System....Pages 221-234
Front Matter....Pages 235-235
A Controlled Quantum SWAP Logic Gate in a 4-center Metal Complex....Pages 237-247
Artificial Molecular Nanomagnets as Spin-Based Quantum Logic Gates....Pages 249-266
Toward a Molecular Ion Qubit....Pages 267-277
Architecture at the End of Moore....Pages 1-10
Implementing Quantum Gates and Algorithms in Ultracold Polar Molecules....Pages 279-290
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