Highly indistinguishable on-demand resonance fluorescence photons from a deterministic quantum dot micropillar device with 74% extraction efficiency

Sebastian Unsleber;Yu Ming He;Stefan Gerhardt;Sebastian Maier;Chao Yang Lu;建伟 潘;Niels Gregersen;Martin Kamp;Christian Schneider;Sven Höfling

University of Würzburg;University of Science and Technology of China;Technical University of Denmark;University of St Andrews

发表时间:2016-4-18

期 刊:Optics Express

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=84964596881&partnerID=8YFLogxK

摘要

The implementation and engineering of bright and coherent solid state quantum light sources is key for the realization of both on chip and remote quantum networks. Despite tremendous efforts for more than 15 years, the combination of these two key prerequisites in a single, potentially scalable device is a major challenge. Here, we report on the observation of bright single photon emission generated via pulsed, resonance fluorescence conditions from a single quantum dot (QD) deterministically centered in a micropillar cavity device via cryogenic optical lithography. The brightness of the QD fluorescence is greatly enhanced on resonance with the fundamental mode of the pillar, leading to an overall device efficiency of η = (74 ± 4) % for a single photon emission as pure as g(2)(0) = 0.0092 ± 0.0004. The combination of large Purcell enhancement and resonant pumping conditions allows us to observe a two-photon wave packet overlap up to ν = (88±3) %.

相关科学

物理学和天文学
原子与分子物理和光学

文献指纹

物理与天文学

resonance fluorescence

quantum dots

photons

wave packets

cryogenics

brightness

pumping

lithography

light sources

chips

solid state

engineering

fluorescence

cavities

augmentation

被引量

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 1.442 0.911
2000 1.222 0.75
2001 1.496 1.422
2002 1.63 1.768
2003 2.669 2.232
2004 2.819 2.464
2005 3.313 2.328
2006 3.235 2.363
2007 3.284 2.059
2008 3.204 2.404
2009 3.039 2.664
2010 2.906 2.425
2011 6.4 2.58 2.558
2012 6.5 2.562 2.095
2013 7.3 2.337 2.182
2014 7.2 2.313 2.116
2015 7.1 1.91 1.645
2016 6.7 1.532 1.531
2017 6.7 1.519 1.562
2018 6.8 1.473 1.631
2019 6.7 1.533 1.651
2020 6.5

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