Zobrazeno 1 - 10
of 40
pro vyhledávání: '"Papon, Camille"'
Autor:
Qvotrup, Celeste, Liu, Zhe, Papon, Camille, Wieck, Andreas D., Ludwig, Arne, Midolo, Leonardo
We report the nanofabrication and characterization of optical spot-size converters couplers based on curved GaAs cantilever waveguides. Using the stress mismatch between the GaAs substrate and deposited Cr-Ni-Au strips, single-mode waveguides can be
Externí odkaz:
http://arxiv.org/abs/2311.06123
Autor:
Chu, Xiao-Liu, Papon, Camille, Bart, Nikolai, Wieck, Andreas D., Ludwig, Arne, Midolo, Leonardo, Rotenberg, Nir, Lodahl, Peter
Efficient light-matter interaction at the single-photon level is of fundamental importance in emerging photonic quantum technology. A fundamental challenge is addressing multiple quantum emitters at once, as intrinsic inhomogeneities of solid-state p
Externí odkaz:
http://arxiv.org/abs/2303.00345
Autor:
Papon, Camille, Wang, Ying, Uppu, Ravitej, Scholz, Sven, Wieck, Andreas Dirk, Ludwig, Arne, Lodahl, Peter, Midolo, Leonardo
We demonstrate the resonant excitation of two quantum dots in a photonic integrated circuit for on-chip single-photon generation in multiple spatial modes. The two quantum dots are electrically tuned to the same emission wavelength using a pair of is
Externí odkaz:
http://arxiv.org/abs/2210.09826
Autor:
Wang, Ying, Uppu, Ravitej, Zhou, Xiaoyan, Papon, Camille, Scholz, Sven, Wieck, Andreas D., Ludwig, Arne, Lodahl, Peter, Midolo, Leonardo
We report on the analysis of electroabsorption in thin GaAs/Al$_{0.3}$Ga$_{0.7}$As nanophotonic waveguides with an embedded $p$-$i$-$n$ junction. By measuring the transmission through waveguides of different lengths, we derive the propagation loss as
Externí odkaz:
http://arxiv.org/abs/2102.06119
Autor:
Uppu, Ravitej, Pedersen, Freja T., Wang, Ying, Olesen, Cecilie T., Papon, Camille, Zhou, Xiaoyan, Midolo, Leonardo, Scholz, Sven, Wieck, Andreas D., Ludwig, Arne, Lodahl, Peter
Publikováno v:
Sci. Adv. 6, eabc8268 (2020)
Photonic qubits are key enablers for quantum-information processing deployable across a distributed quantum network. An on-demand and truly scalable source of indistinguishable single photons is the essential component enabling high-fidelity photonic
Externí odkaz:
http://arxiv.org/abs/2003.08919
Autor:
Zhou, Xiaoyan, Uppu, Ravitej, Liu, Zhe, Papon, Camille, Schott, Rudiger, Wieck, Andreas D., Ludwig, Arne, Lodahl, Peter, Midolo, Leonardo
Semiconductor quantum dots in photonic integrated circuits enable scaling quantum-information processing to many single photons and quantum-optical gates. On-chip spectral filters are essential to achieve high-purity and coherent photon emission from
Externí odkaz:
http://arxiv.org/abs/1910.05785
Autor:
Papon, Camille, Zhou, Xiaoyan, Thyrrestrup, Henri, Liu, Zhe, Stobbe, Søren, Schott, Rüdiger, Wieck, Andreas D., Ludwig, Arne, Lodahl, Peter, Midolo, Leonardo
The merger between integrated photonics and quantum optics promises new opportunities within photonic quantum technology with the very significant progress on excellent photon-emitter interfaces and advanced optical circuits. A key missing functional
Externí odkaz:
http://arxiv.org/abs/1811.10962
Akademický článek
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Autor:
Ding, Dapeng, Appel, Martin Hayhurst, Javadi, Alisa, Zhou, Xiaoyan, Löbl, Matthias Christian, Söllner, Immo, Schott, Rüdiger, Papon, Camille, Pregnolato, Tommaso, Midolo, Leonardo, Wieck, Andreas Dirk, Ludwig, Arne, Warburton, Richard John, Schröder, Tim, Lodahl, Peter
Publikováno v:
Phys. Rev. Applied 11, 031002 (2019)
Waveguide-based spin-photon interfaces on the GaAs platform have emerged as a promising system for a variety of quantum information applications directly integrated into planar photonic circuits. The coherent control of spin states in a quantum dot c
Externí odkaz:
http://arxiv.org/abs/1810.06103
Autor:
Javadi, Alisa, Ding, Dapeng, Appel, Martin Hayhurst, Mahmoodian, Sahand, Löbl, Matthias C., Söllner, Immo, Schott, Rüdiger, Papon, Camille, Pregnolato, Tommaso, Stobbe, Søren, Midolo, Leonardo, Schröder, Tim, Wieck, Andreas D., Ludwig, Arne, Warburton, Richard J., Lodahl, Peter
Access to the electron spin is at the heart of many protocols for integrated and distributed quantum-information processing [1-4]. For instance, interfacing the spin-state of an electron and a photon can be utilized to perform quantum gates between p
Externí odkaz:
http://arxiv.org/abs/1709.06369