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- W2005703293 abstract "We introduce a platform for realizing on-chip quantum electrodynamics using photonic-crystal waveguide structures composed of periodic nanowire arrays with embedded semiconductor quantum dots to act as quantum light sources. These nanowire-based structures, which can now be fabricated with excellent precision, are found to produce waveguide Purcell factors exceeding 100 and on-chip $ensuremath{beta}$ factors up to 99%. We investigate the fundamental optical properties of photonic-crystal waveguides and finite-size structures, using both photonic band structure calculations and rigorous Green function computations which allow us to obtain the modal properties and the local density of photon states. A comparison with slab-based photonic crystals is also made and we highlight a number of key advantages in the nanowire system, including the potential to reduce extrinsic scattering losses and produce high theoretical Purcell factors and $ensuremath{beta}$ factors on-chip. We also demonstrate that these structures exhibit rich photonic Lamb shifts over broadband frequencies." @default.
- W2005703293 created "2016-06-24" @default.
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- W2005703293 date "2014-11-07" @default.
- W2005703293 modified "2023-10-14" @default.
- W2005703293 title "Theory and design of quantum light sources from quantum dots embedded in semiconductor-nanowire photonic-crystal systems" @default.
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- W2005703293 doi "https://doi.org/10.1103/physrevb.90.205406" @default.
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