Clarification of exceptional point contribution for photonic sensing
Exceptional points, with simultaneous coalescence of eigen-values and eigen-vectors, can be realized with non-Hermitian photonic systems. With the enhanced response, exceptional points have been proposed to improve the performance of photonic sensing. Recently, there are intense debate about the act...
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Zusammenfassung: | Exceptional points, with simultaneous coalescence of eigen-values and
eigen-vectors, can be realized with non-Hermitian photonic systems. With the
enhanced response, exceptional points have been proposed to improve the
performance of photonic sensing. Recently, there are intense debate about the
actual sensing advantage of exceptional points. The major concern is that
intrinsic noise is also amplified at exceptional points. Here, we aim to
clarify the contribution of exceptional points for photonic sensing. This is
achieved by analyzing the condition to realize divergent quantum Fisher
information in linear non-Hermitian photonic systems. We show that the
divergence of quantum Fisher information is the result of lasing threshold,
instead of exceptional points. However, exceptional points correspond to the
condition that lasing threshold is simultaneously achieved across multiple
photonic modes. Therefore, exceptional points can further improve the
sensitivity on top of lasing threshold. On the other hand, exceptional points
alone cannot provide sensing advantage. |
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DOI: | 10.48550/arxiv.2207.10198 |