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    Phase transition to spatial Bloch-like oscillation in squeezed photonic lattices

    , Article Physical Review A - Atomic, Molecular, and Optical Physics ; Volume 88, Issue 2 , 2013 ; 10502947 (ISSN) Nezhad, M. K ; Bahrampour, A. R ; Golshani, M ; Mahdavi, S. M ; Langari, A ; Sharif University of Technology
    2013
    Abstract
    We propose an exactly solvable waveguide lattice incorporating an inhomogeneous coupling coefficient. This structure provides classical analogs to the squeezed number and squeezed coherent intensity distribution in quantum optics where the propagation length plays the role of a squeezed amplitude. The intensity pattern is obtained in a closed form for an arbitrary distribution of the initial beam profile. We have also investigated the phase transition to the spatial Bloch-like oscillations by adding a linear gradient to the propagation constant of each waveguide (α). Our analytical results show that the Bloch-like oscillations appear above a critical value for the linear gradient of the... 

    Backhaul need for speed: 60 GHz is the solution

    , Article IEEE Wireless Communications ; Volume 22, Issue 6 , 2015 , Pages 114-121 ; 15361284 (ISSN) Verma, L ; Fakharzadeh, M ; Choi, S ; Sharif University of Technology
    Abstract
    The availability of 7-9 GHz of unlicensed spectrum at 60 GHz, advances in low-cost silicon technology, and high interference rejection due to atmospheric loss make 60 GHz an ideal solution for future 4G/5G small-cell backhaul links, where multi-gigabit rates are required. In this article, we review the 60 GHz propagation properties, the practical technology limits, and the regulatory and regional environmental impacts to present a framework for the 60 GHz backhaul link design that translates the link requirements to the essential transmitter and receiver system parameters. This approach includes a preliminary design that generates the input data set for an optimization problem. Two physical...