Affiliation:
1. Department of Physics Hanyang University Seoul 04763 South Korea
2. School of Electrical Engineering Korea Advanced Institute of Science and Technology Daejon 34141 South Korea
3. Schulich Faculty of Chemistry and Faculty of Physics Technion‐Israel Institute of Technology Haifa 32000 Israel
Abstract
AbstractInterferometers and resonant cavities are indispensable driving mechanisms for compact, high‐speed, and low‐power modulators and switches in modern signal processing systems. However, their limitations in key performance metrics critically restrict present data‐processing capabilities. Here, a completely different wave‐modulation mechanism is proposed based on non‐Hermitian dynamics near an exceptional point (EP) singularity. The proposed modulator is enabled by EP‐bypassing adiabatic processes that exclusively select different final states depending on active trigger signal possibly at indefinitely small magnitude in principle. Importantly, this operation principle does not involve any explicit frequency‐dispersive feature in stark contrast to interference or resonance effects. In addition, it can be implemented in available device‐engineering platforms such as integrated optical circuits. Therefore, it is of great interest to further investigate the proposed principle for improved signal‐processing systems on forthcoming demand.
Subject
Condensed Matter Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Cited by
2 articles.
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