Second-order quantum nonlinear optical processes in single graphene nanostructures and arrays
arXiv:1406.4360 · doi:10.1088/1367-2630/17/8/083031
Abstract
Intense efforts have been made in recent years to realize nonlinear optical interactions at the single-photon level. Much of this work has focused on achieving strong third-order nonlinearities, such as by using single atoms or other quantum emitters while the possibility of achieving strong second-order nonlinearities remains unexplored. Here, we describe a novel technique to realize such nonlinearities using graphene, exploiting the strong per-photon fields associated with tightly confined graphene plasmons in combination with spatially nonlocal nonlinear optical interactions. We show that in properly designed graphene nanostructures, these conditions enable extremely strong internal down-conversion between a single quantized plasmon and an entangled plasmon pair, or the reverse process of second harmonic generation. A separate issue is how such strong internal nonlinearities can be observed, given the nominally weak coupling between these plasmon resonances and free-space radiative fields. On one hand, by using the collective coupling to radiation of nanostructure arrays, we show that the internal nonlinearities can manifest themselves as efficient frequency conversion of radiative fields at extremely low input powers. On the other hand, the development of techniques to efficiently couple to single nanostructures would allow these nonlinear processes to occur at the level of single input photons.
25 pages, 6 figures
References in corpus (18)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- The Quantum Internet
- Dielectric function, screening, and plasmons in 2D graphene
- Graphene Plasmonics: Challenges and Opportunities
- Dynamical polarization of graphene at finite doping
- Mid-infrared plasmons in scaled graphene nanostructures
- Nonlinear electromagnetic response of graphene: Frequency multiplication and the self-consistent-field effects
- Non-linear electromagnetic response of graphene
- A Quantum Gate between a Flying Optical Photon and a Single Trapped Atom
- Universal Approach to Optimal Photon Storage in Atomic Media
- All-Optical Switch and Transistor Gated by One Stored Photon
- Input-Output Formalism For Few-Photon Transport in One-Dimensional Nanophotonic Waveguides Coupled to a Qubit
- Strong interaction between light and a single trapped atom without a cavity
- Extraordinary nonlinear plasmonics in graphene nanoislands
- Nonlinear interaction between two heralded single photons
- Plasmon-enhanced nonlinear wave mixing in nanostructured graphene
- Strong coupling between single photons in semiconductor microcavities
Cited by in corpus (21)
- Multipolar nonlinear nanophotonics
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- Theory of plasmonic effects in nonlinear optics: the case of graphene
- Universal linear and nonlinear electrodynamics of the Dirac fluid
- Electromagnetic wave propagation in spatially homogeneous yet smoothly time-varying dielectric media
- Roadmap on Nonlocality in Photonic Materials and Metamaterials
- Nonlinear light mixing by graphene plasmons
- Tunable and Dual-broadband Giant Enhancement of SHG and THG in a Highly-engineered Graphene-Insulator-Graphene Metasurface
- Third-order optical conductivity of an electron fluid
- Nonlinear optical conductivity of a generic two band systems, with application to doped and gapped graphene
- Graphene as a source of entangled plasmons
- Nonlinear quantum logic with colliding graphene plasmons
- Application of Madelung Hydrodynamics to Plasmonics and Nonlinear Optics in Two-Dimensional Materials
- Enhanced second harmonic generation and photon drag effect in a doped graphene placed on a two-dimensional diffraction grating
- Plasmon polariton assisted second-harmonic generation in graphene
- Nonlocal and nonlinear plasmonics in atomically thin heterostructures