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Electromagnetically induced transparency : Optics in coherent media

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TLDR
In this paper, the authors consider the atomic dynamics and the optical response of the medium to a continuous-wave laser and show how coherently prepared media can be used to improve frequency conversion in nonlinear optical mixing experiments.
Abstract
Coherent preparation by laser light of quantum states of atoms and molecules can lead to quantum interference in the amplitudes of optical transitions. In this way the optical properties of a medium can be dramatically modified, leading to electromagnetically induced transparency and related effects, which have placed gas-phase systems at the center of recent advances in the development of media with radically new optical properties. This article reviews these advances and the new possibilities they offer for nonlinear optics and quantum information science. As a basis for the theory of electromagnetically induced transparency the authors consider the atomic dynamics and the optical response of the medium to a continuous-wave laser. They then discuss pulse propagation and the adiabatic evolution of field-coupled states and show how coherently prepared media can be used to improve frequency conversion in nonlinear optical mixing experiments. The extension of these concepts to very weak optical fields in the few-photon limit is then examined. The review concludes with a discussion of future prospects and potential new applications.

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Journal ArticleDOI

Integrated in-fiber coupler for a whispering-gallery mode microsphere resonator.

TL;DR: An integrated in-fiber coupler is proposed and demonstrated, which can excite whispering-gallery mode (WGM) in a microsphere resonator, which has the advantages of compact structure, convenient operation, and high durability.
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Simultaneous two-photon resonant optical laser locking (STROLLing) in the hyperfine Paschen-Back regime.

TL;DR: In this paper, the authors demonstrate a technique to lock simultaneously two laser frequencies to each step of a two-photon transition in the presence of a magnetic field sufficiently large to gain access to the hyperfine Paschenback regime.
Journal ArticleDOI

Plasmon induced transparency and absorption in bright-bright mode coupling metamaterials: a radiating two-oscillator model analysis

TL;DR: In this article, a radiating two-oscillator model is developed to describe plasmon-induced transparency (PIT) and absorption (PIA) spectral responses in a two-bright mode coupling system, from which the analytical expressions of the scattering parameters are derived.
Journal ArticleDOI

Tunable nonlinear parity-time-symmetric defect modes with an atomic cell.

TL;DR: In this paper, a tunable highly nonlinear defect in a one-dimensional photonic crystal is presented, which consists of an atomic cell filled in with two isotopes of three-level atoms.
Journal ArticleDOI

Controlling the optical bistability and multistability via tunneling-induced and incoherent pumping field in a triple coupled quantum dots at a wavelength of λ = 1.550 μm

TL;DR: In this paper, the behavior of optical bistability, optical multistability and transition between them at a wavelength of λ ǫ = 1.550μm was investigated in a triple coupled quantum dots nanostructure with two consecutive tunneling-induced and incoherent pumping fields.
References
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Book

Quantum Computation and Quantum Information

TL;DR: In this article, the quantum Fourier transform and its application in quantum information theory is discussed, and distance measures for quantum information are defined. And quantum error-correction and entropy and information are discussed.

Quantum Computation and Quantum Information

TL;DR: This chapter discusses quantum information theory, public-key cryptography and the RSA cryptosystem, and the proof of Lieb's theorem.
Journal ArticleDOI

Spintronics: a spin-based electronics vision for the future.

TL;DR: This review describes a new paradigm of electronics based on the spin degree of freedom of the electron, which has the potential advantages of nonvolatility, increased data processing speed, decreased electric power consumption, and increased integration densities compared with conventional semiconductor devices.
Journal ArticleDOI

Spintronics: Fundamentals and applications

TL;DR: Spintronics, or spin electronics, involves the study of active control and manipulation of spin degrees of freedom in solid-state systems as discussed by the authors, where the primary focus is on the basic physical principles underlying the generation of carrier spin polarization, spin dynamics, and spin-polarized transport.
Journal ArticleDOI

Effects of Configuration Interaction on Intensities and Phase Shifts

TL;DR: In this paper, a theoretical analysis of the shape of the 2s2p^{1}P resonance of He observed in the inelastic scattering of electrons is presented. But the analysis is restricted to the case of one discrete level with two or more continua and of a set of discrete levels with one continuum.
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