Non-Markovian dynamics revealed at the bound state in continuum
ORAL
Abstract
We propose a methodical approach to controlling and enhancing deviations from exponential decay in quantum and optical systems by exploiting recent progress surrounding another subtle effect: the bound states in continuum, which have been observed in optical waveguide array experiments within this past decade. Specifically, we show that by populating an initial state orthogonal to that of the bound state in continuum, it is possible to engineer system parameters for which the usual exponential decay process is suppressed in favor of inverse power law dynamics and coherent effects that typically would be extremely difficult to detect in experiment. We demonstrate our method using a model based on an optical waveguide array experiment, and further show that the method is robust even in the face of significant detuning from the precise location of the bound state in continuum.
[1] S. Garmon, K. Noba, G. Ordonez and D. Segal, arXiv:1808:04781
[2] S. Garmon, T. Petrosky, L. Simine and D. Segal, Fortschr. Phys. 61, 261 (2013)
[3] S. Weimann, et al, Phys. Rev. Lett. 111, 240403 (2013)
[1] S. Garmon, K. Noba, G. Ordonez and D. Segal, arXiv:1808:04781
[2] S. Garmon, T. Petrosky, L. Simine and D. Segal, Fortschr. Phys. 61, 261 (2013)
[3] S. Weimann, et al, Phys. Rev. Lett. 111, 240403 (2013)
*This work was supported by JSPS KAKENHI Grants No. JP18K03466 and JP16K05481 as well as the Research Foundation for Opto-Science and Technology (S.G.) and the Canada Research Chair Program (D.S.).
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Presenters
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Savannah Garmon
- Osaka Prefecture University