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1.
Sci Rep ; 7(1): 4812, 2017 07 06.
Artigo em Inglês | MEDLINE | ID: mdl-28684752

RESUMO

While single photon detectors provide superior intensity sensitivity, spectral resolution is usually lost after the detection event. Yet for applications in low signal infrared spectroscopy recovering information about the photon's frequency contributions is essential. Here we use highly efficient waveguide integrated superconducting single-photon detectors for on-chip coherent detection. In a single nanophotonic device, we demonstrate both single-photon counting with up to 86% on-chip detection efficiency, as well as heterodyne coherent detection with spectral resolution f/∆f exceeding 1011. By mixing a local oscillator with the single photon signal field, we observe frequency modulation at the intermediate frequency with ultra-low local oscillator power in the femto-Watt range. By optimizing the nanowire geometry and the working parameters of the detection scheme, we reach quantum-limited sensitivity. Our approach enables to realize matrix integrated heterodyne nanophotonic devices in the C-band wavelength range, for classical and quantum optics applications where single-photon counting as well as high spectral resolution are required simultaneously.

2.
Opt Express ; 25(8): 8739-8750, 2017 Apr 17.
Artigo em Inglês | MEDLINE | ID: mdl-28437951

RESUMO

We investigate how the bias current affects the hot-spot relaxation dynamics in niobium nitride. We use for this purpose a near-infrared pump-probe technique on a waveguide-integrated superconducting nanowire single-photon detector driven in the two-photon regime. We observe a strong increase in the picosecond relaxation time for higher bias currents. A minimum relaxation time of (22 ± 1) ps is obtained when applying a bias current of 50% of the switching current at 1.7 K bath temperature. We also propose a practical approach to accurately estimate the photon detection regimes based on the reconstruction of the measured detector tomography at different bias currents and for different illumination conditions.

3.
Nano Lett ; 16(11): 7085-7092, 2016 11 09.
Artigo em Inglês | MEDLINE | ID: mdl-27759401

RESUMO

Ultrafast single-photon detectors with high efficiency are of utmost importance for many applications in the context of integrated quantum photonic circuits. Detectors based on superconductor nanowires attached to optical waveguides are particularly appealing for this purpose. However, their speed is limited because the required high absorption efficiency necessitates long nanowires deposited on top of the waveguide. This enhances the kinetic inductance and makes the detectors slow. Here, we solve this problem by aligning the nanowire, contrary to usual choice, perpendicular to the waveguide to realize devices with a length below 1 µm. By integrating the nanowire into a photonic crystal cavity, we recover high absorption efficiency, thus enhancing the detection efficiency by more than an order of magnitude. Our cavity enhanced superconducting nanowire detectors are fully embedded in silicon nanophotonic circuits and efficiently detect single photons at telecom wavelengths. The detectors possess subnanosecond decay (∼120 ps) and recovery times (∼510 ps) and thus show potential for GHz count rates at low timing jitter (∼32 ps). The small absorption volume allows efficient threshold multiphoton detection.

4.
Sci Rep ; 5: 10941, 2015 Jun 10.
Artigo em Inglês | MEDLINE | ID: mdl-26061283

RESUMO

Superconducting nanowire single-photon detectors (SNSPDs) provide high efficiency for detecting individual photons while keeping dark counts and timing jitter minimal. Besides superior detection performance over a broad optical bandwidth, compatibility with an integrated optical platform is a crucial requirement for applications in emerging quantum photonic technologies. Here we present SNSPDs embedded in nanophotonic integrated circuits which achieve internal quantum efficiencies close to unity at 1550 nm wavelength. This allows for the SNSPDs to be operated at bias currents far below the critical current where unwanted dark count events reach milli-Hz levels while on-chip detection efficiencies above 70% are maintained. The measured dark count rates correspond to noise-equivalent powers in the 10(-19) W/Hz(-1/2) range and the timing jitter is as low as 35 ps. Our detectors are fully scalable and interface directly with waveguide-based optical platforms.

5.
J Semit Stud ; 56(2): 367-99, 2011.
Artigo em Inglês | MEDLINE | ID: mdl-22066152

RESUMO

This article deals with the 22nd volume of Muhammad ibn Zakariyaʾ al-Raziʾs (Rhazes, d. 313/925) medical encyclopedia al-Hawi fi l-tibb. Volume twenty-two is dedicated to pharmacology and pharmacological tables, and introduced by a short treatise in which Rhazes explains his unusual choice of tabular design and terminological arrangement. Following upon a brief bio-bibliographical survey and forming the core of this article, Rhazesʾ introductory treatise is re-edited here in the original Arabic and further made accessible through an annotated English translation. Edition and translation, in turn, are followed by a detailed study of both the treatise and the tables, including explanatory diagrams, statistical evaluations, a source-critical analysis, and some observations regarding the tradition of synoptic tables in Arabic pharmaceutical literature ­ thus gradually emerges the conceptual originality of Rhazesʾ implementation, and new light is thrown on his broad linguistic interests and abilities. The article concludes with an excursion into the realm of Persian-Chinese intellectual exchange, suggesting the possibility of a stimulus to Rhazesʾ imagination from a remote and otherwise mostly hidden corner.


Assuntos
Mundo Árabe , Farmacologia , Estatística como Assunto , Mundo Árabe/história , História da Medicina , História Antiga , Farmacologia/educação , Farmacologia/história , Estatística como Assunto/educação , Estatística como Assunto/história , Tradução
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