Generation of strongly correlated photons in a nonlinear one-dimensional system
POSTER
Abstract
We present a theoretical investigation of a photonic system obeying the quantum non-linear Schr\"odinger equation in a finite size system. Such systems are now being implemented using a hollow-core fiber loaded with trapped alkali atoms. The tight transverse confinement of the photonic modes enables a large atom-field coupling strength. We investigate the effects of large nonlinearity on quantum correlations of transmitted and reflected photons. The widely tunable nonlinearity in the system enables one to coherently control statistical properties of photon fields and to create photonic Luttinger liquids.
Authors
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Mohammad Hafezi
Harvard University, Physics Department, Harvard University
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Darrick Chang
Harvard University
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Vladimir Gritsev
Harvard University
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Eugene Demler
Harvard University
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Mikhail Lukin
Harvard University, Department of Physics, Harvard University, Physics Department, Harvard University