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Mode junction photonics with a symmetry-breaking arrangement of mode-orthogonal heterostructures
Author(s) -
Sunkyu Yu,
Xianji Piao,
Sukmo Koo,
Jung H. Shin,
Seung Hoon Lee,
Bumki Min,
Namkyoo Park
Publication year - 2011
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.19.025500
Subject(s) - photonics , photonic crystal , photonic integrated circuit , optoelectronics , photon , adder , optical switch , optics , physics , computer science , cmos
Junction structures provide the foundation of digital electronics and spintronics today. An equivalent, a photonic junction to achieve systematic and drastic control of photon flow is currently missing, but is mandatory for serious all-optical signal processing. Here we propose a photonic junction built upon mode-orthogonal hetero-structures, as a fundamental structural unit for photonic integrated circuits. Controlling the optical potential of mode-orthogonal junctions, the flow of photons can be dynamically manipulated, to complete the correspondence to the electronic junction structures. Of the possible applications, we provide examples of a photonic junction diode and a multi-junction half-adder, with exceptional performance metrics. Highly directional (41dB), nearly unity throughput, ultra-low threshold-power, high quality signal regeneration at 200Gb/s, and all-optic logic operations are successfully derived with the self-induced, bi-level dynamic mode-conversion process across the junction.

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