IEEE Journal of Quantum Electronics

Volume 52 Issue 12 • Dec. 2016

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  • Front cover

    Publication Year: 2016, Article Sequence Number: 0001201
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  • IEEE Journal of Quantum Electronics publication information

    Publication Year: 2016, Article Sequence Number: 0002401
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  • IEEE Journal of Quantum Electronics information for authors

    Publication Year: 2016, Article Sequence Number: 0003601
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  • Blank page

    Publication Year: 2016, Article Sequence Number: 0004801
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  • Table of contents

    Publication Year: 2016, Article Sequence Number: 0101201
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  • Some Features of Boron Isotopes Separation by the Laser-Assisted Retardation of Condensation Method in Multipass Irradiation Cell Implemented as a Resonator

    Publication Year: 2016, Article Sequence Number: 1400208
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1209 KB) | HTML iconHTML

    More cheap production of boron isotopes is needed to provide further progress in nuclear engineering, microelectronics, and nuclear medicine. Separation of boron isotopes by laser-assisted retarded condensation scheme is considered. Continuous irradiation of steady gas flow is considered. In this case, interaction time of gas flow with laser beam (gas flow length) is desirable to make as long as p... View full abstract»

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  • Exploring Parity Anomaly for Dual Peak Infrared Photodetection

    Publication Year: 2016, Article Sequence Number: 4300406
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1603 KB) | HTML iconHTML

    In this paper, we show a superlattice quantum well infrared photodetector (S-QWIP) grown by metal-organic vapor phase epitaxy with two narrow photocurrent peaks in the mid infrared range due to transitions between the ground state from a quantum well and two excited states localized in the continuum. The structure composed of InGaAs/InAlAs quantum-well lattice matched to InP with a central quantum... View full abstract»

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  • Magnetically and Photonically Tunable Double Waveguide Inverter

    Publication Year: 2016, Article Sequence Number: 6000106
    Cited by:  Papers (2)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (2294 KB) | HTML iconHTML

    We consider a system of two parallel quantum waveguides that coupled via a coupling window. The coupled waveguide system is exposed to an external magnetic field and coupled to a photon field. We take into account both the electron-electron and electron-photon interactions in the system and an exact diagonalization technique is used to treat these interactions. We investigate electron switching be... View full abstract»

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  • Bimodal Resonance Phenomena—Part I: Generalized Fabry–Pérot Interferometers

    Publication Year: 2016, Article Sequence Number: 6100508
    Cited by:  Papers (1)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (2020 KB) | HTML iconHTML

    The operation of several optical components, such as high-contrast gratings, is based on the interference between two oscillation modes. Therefore, this paper is devoted to the complete characterization of bimodal Fabry-Pérot interferometers, which can effectively model such two-mode interactions. Thanks to a novel parameterization of the mirror scattering matrices, this paper presents for... View full abstract»

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  • Optical Bistability and Switching in Oppositely Directed Coupler

    Publication Year: 2016, Article Sequence Number: 6100608
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1462 KB) | HTML iconHTML

    We report the optical bistability in two core oppositely directed coupler with negative index material channel. Using Langrangian variational method and Jacobi elliptic functions, we construct the solutions of the coupled nonlinear Schrödinger equations. The bistability arises due to the effective feedback mechanism as a result of opposite directionality of the phase velocity and energy fl... View full abstract»

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  • Spectral Splitting of Optical Pulses Inside a Dispersive Medium at a Temporal Boundary

    Publication Year: 2016, Article Sequence Number: 6100708
    Cited by:  Papers (2)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (2042 KB) | HTML iconHTML

    We show numerically that the spectrum of an optical pulse splits into multiple, widely separated, spectral bands when it arrives at a temporal boundary across which the refractive index suddenly changes. At the same time, the pulse breaks into several temporally separated pulses traveling at different speeds. The number of such pulses depends on the dispersive properties of the medium. We study th... View full abstract»

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  • Effect of Time Delay on the Stability of Optoelectronic Oscillators Based on Whispering-Gallery Mode Resonators

    Publication Year: 2016, Article Sequence Number: 6500107
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (2574 KB) | HTML iconHTML

    Optoelectronic oscillators (OEOs) are microwave photonic systems intended to generate ultra-pure radio-frequency signals for aerospace and communication engineering applications. Typically, a long optical fiber delay line is inserted in the feedback loop as an energy storage element intended to improve the phase noise performance. An ultra-high Q whispering-gallery mode resonator can be inserted a... View full abstract»

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  • Bimodal Resonance Phenomena—Part II: High/Low-Contrast Grating Resonators

    Publication Year: 2016, Article Sequence Number: 6600409
    Cited by:  Papers (1)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (2133 KB) | HTML iconHTML

    Several groups are currently working on integrated optical resonators. In this context, one of the most interesting implementations is based on high-contrast gratings, featuring high-Q Fano resonances. Mastering these phenomena can potentially open up the possibility to exploit such devices for the implementation of vertical-coupled filters or compact monolithic lasers. To this aim, in this paper,... View full abstract»

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  • 2016 IndexIEEE Journal of Quantum ElectronicsVol. 52

    Publication Year: 2016, Article Sequence Number: 9900120
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Aims & Scope

The IEEE Journal of Quantum Electronics is dedicated to the publication of manuscripts reporting novel experimental or theoretical results in the broad field of the science and technology of quantum electronics.

Full Aims & Scope

Meet Our Editors

Editor-in-Chief
Prof. Hon Ki Tsang
Chinese University of Hong Kong