An Introduction to the Quantum Theory of Nonlinear Optics
arXiv:0901.3439 · doi:10.2478/v10155-010-0094-8
Abstract
This article is provides an introduction to the quantum theory of optics in nonlinear dielectric media. We begin with a short summary of the classical theory of nonlinear optics, that is nonlinear optics done with classical fields. We then discuss the canonical formalism for fields and its quantization. This is applied to quantizing the electromagnetic field in free space. The definition of a nonclassical state of the electromagnetic field is presented, and several examples are examined. This is followed by a brief introduction to entanglement in the context of field modes. The next task is the quantization of the electromagnetic field in an inhomogeneous, linear dielectric medium. Before going on to field quantization in nonlinear media, we discuss a number of commonly employed phenomenological models for quantum nonlinear optical processes. We then quantize the field in both nondispersive and dispersive nonlinear media. Flaws in the most commonly used methods of accomplishing this task are pointed out and discussed. Once the quantization has been completed, it is used to study a multimode theory of parametric down conversion and the propagation of quantum solitons.
80 pages,
References in corpus (2)
Cited by in corpus (18)
- Quantum optical waveform conversion
- Dissipative Many-body Quantum Optics in Rydberg Media
- Introduction to the Absolute Brightness and Number Statistics in Spontaneous Parametric Down-Conversion
- Quantum noise effects with Kerr nonlinearity enhancement in coupled gain-loss waveguides
- Fully Quantum Approach to Optomechanical Entanglement
- Interaction between light and matter: A photon wave function approach
- Photon-photon gates in Bose-Einstein condensates
- Quantum Theory of Light in a Dispersive Structured Linear Dielectric: a Macroscopic Hamiltonian Tutorial Treatment
- Spin squeezing, entanglement and coherence in two driven, dissipative, nonlinear cavities coupled with single and two-photon exchange
- Inverse Design of Nonlinear Metasurfaces for Sum Frequency Generation
- Effect of incoherent pump on two-mode entanglement in optical parametric generation
- Phase effects in coherently-stimulated down-conversion with a quantized pump field
- On the Problem of Electromagnetic-Field Quantization
- Design of diamond microcavities for single photon frequency down-conversion
- Transfer of spin squeezing and particle entanglement between atoms and photons in coupled cavities via two-photon exchange
- Nonlinear optical effects on the atom-field interaction based on the nonlinear coherent states approach
- Photon cooling: linear vs nonlinear interactions
- Quantum coherent microwave-optical transduction using high overtone bulk acoustic resonances