By Stefanos Kaxiras (auth.), Nicolas Lorente, Christian Joachim (eds.)
Have you ever questioned over tips on how to practice Boolean good judgment on the atomic scale? Or puzzled how one can perform extra common calculations in a single unmarried molecule or utilizing a floor dangling bond atomic scale circuit? This quantity offers an replace at the layout of unmarried molecule units, reminiscent of recitfiers, switches and transistors, extra complex semi-classical and quantum boolean gates built-in in one molecule or developed atom via atom on a passivated semi-conductor floor and describes their interconnections with tailored nano-scale wiring. the most participants to the sphere of unmarried molecule good judgment gates and floor dangling bond atomic scale circuits concept and layout, have been introduced jointly for the 1st time to give a contribution on subject matters reminiscent of molecule circuits, floor dangling bond circuits, quantum managed common sense gates and molecular qubits. Contributions during this quantity originate from the Barcelona workshop of the AtMol convention sequence, held from January 12-13 2012.
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Extra resources for Architecture and Design of Molecule Logic Gates and Atom Circuits: Proceedings of the 2nd AtMol European Workshop
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3c) but can be larger loops for a larger structure. A larger number of orbitals lead also to an increase in the number of possible paths. But the individual terms contain more couplings as well, and if only one bond is missing, then the path does not exist. For six orbitals, there are 46 possible paths, but for the bonding pattern of a particular molecule, this number considerably reduces and becomes two for benzene (Fig. 3d) with the electrodes attached in an orthoconfiguration. EF / > 0 (see (2) and (3)).
1039/C1CP20924H 15. : Controlling the transmission line shape of molecular t-stubs and potential thermoelectric applications. J. Chem. Phys. 3653790 16. : A short review of nanoelectronic architectures. 1088/0957–4484/15/4/019 17. : A memory/adder model based on single C6 0 molecular transistors. 1088/0957–4484/12/3/324 18. : The performance of hybrid-molecular architectures with current CMOS technology as a reference. 1016/S1386– 9477(02)00237–0 Quantum Interference Effects in Electron Transport 39 19.