Abstract
Motivated by rapidly advancing capabilities for extensive nanoscale patterning of optical materials, I propose an approach to implementing photonic sequential logic that exploits circuit-scale phase coherence for efficient realizations of fundamental components such as a NAND-gate-with-fanout and a bistable latch. Kerr-nonlinear optical resonators are utilized in combination with interference effects to drive the binary logic. Quantum-optical input-output models are characterized numerically using design parameters that yield attojoule-scale energy separation between the latch states. © 2011 American Institute of Physics.
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CITATION STYLE
Mabuchi, H. (2011). Nonlinear interferometry approach to photonic sequential logic. Applied Physics Letters, 99(15). https://doi.org/10.1063/1.3650250
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