Habraken, S J MStannigel, KLukin, MikhailZoller, PRabl, P2014-03-062012Habraken, S J M, K Stannigel, M D Lukin, P Zoller, and P Rabl. 2012. “Continuous Mode Cooling and Phonon Routers for Phononic Quantum Networks.” New Journal of Physics 14 (11) (November 5): 115004.1367-2630http://nrs.harvard.edu/urn-3:HUL.InstRepos:11870364We study the implementation of quantum state transfer protocols in phonon networks, where in analogy to optical networks, quantum information is transmitted through propagating phonons in extended mechanical resonator arrays or phonon waveguides. We describe how the problem of a non-vanishing thermal occupation of the phononic quantum channel can be overcome by implementing optomechanical multi- and continuous mode cooling schemes to create a 'cold' frequency window for transmitting quantum states. In addition, we discuss the implementation of phonon circulators and switchable phonon routers, which rely on strong coherent optomechanical interactions only, and do not require strong magnetic fields or specific materials. Both techniques can be applied and adapted to various physical implementations, where phonons coupled to spin or charge based qubits are used for on-chip networking applications.en-USQuantum Physics (quant-ph); Mesoscale and Nanoscale Physics (cond-mat.mes-hall)Continuous mode cooling and phonon routers for phononic quantum networksJournal Article2014-02-24Mikhail Lukin2014-03-0610.1088/1367-2630/14/11/115004