4.8 Article

Optical parametric oscillation with distributed feedback in cold atoms

Journal

NATURE PHOTONICS
Volume 6, Issue 2, Pages 101-104

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NPHOTON.2011.320

Keywords

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Funding

  1. Alexander von Humboldt foundation
  2. Deutsche Forschungsgemeinschaft (DFG)
  3. Research Executive Agency [PIRSES-GA-2010-268717]

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There is currently a strong interest in mirrorless lasing systems(1), in which the electromagnetic feedback is provided either by disorder (multiple scattering in the gain medium) or by order (multiple Bragg reflection). These mechanisms correspond, respectively, to random lasers(2) and photonic crystal lasers(3). The crossover regime between order and disorder, or correlated disorder, has also been investigated with some success(4-6). Here, we report one-dimensional photonic-crystal lasing (that is, distributed feedback lasing(7,8)) with a cold atom cloud that simultaneously provides both gain and feedback. The atoms are trapped in a one-dimensional lattice, producing a density modulation that creates a strong Bragg reflection with a small angle of incidence. Pumping the atoms with auxiliary beams induces four-wave mixing, which provides parametric gain. The combination of both ingredients generates a mirrorless parametric oscillation with a conical output emission, the apex angle of which is tunable with the lattice periodicity.

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