Download | - View final version: Bright single InAsP quantum dots at telecom wavelengths in position-controlled InP nanowires: the role of the photonic waveguide (PDF, 874 KiB)
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Author | Search for: Haffouz, Sofiane1; Search for: Dalacu, Dan1; Search for: Poole, Philip J.1; Search for: Lapointe, Jean1; Search for: Poitras, Daniel1; Search for: Mnaymneh, Khaled1; Search for: Wu, Xiaohua1; Search for: Korkusinski, Marek2; Search for: Williams, Robin L.2 |
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Affiliation | - National Research Council of Canada. Advanced Electronics and Photonics
- National Research Council of Canada. Security and Disruptive Technologies
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Format | Text, Article |
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Abstract | We report on the site-selected growth of bright single InAsP quantum dots embedded within InP photonic nanowire waveguides emitting at telecom wavelengths. We demonstrate a dramatic dependence of the emission rate on both the emission wavelength and the nanowire diameter. With an appropriately designed waveguide, tailored to the emission wavelength of the dot, an increase in count rate by nearly two orders of magnitude (0.4kcps to 35kcps) is obtained for quantum dots emitting in the telecom O-band. Using emission-wavelength-optimised waveguides, we demonstrate bright, narrow linewidth emission from single InAsP quantum dots with an unprecedented tuning range from 880nm to 1550nm. These results pave the way towards efficient single photon sources at telecom wavelengths using deterministically grown InAsP/InP nanowire quantum dots. |
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Publication date | 2018-02-03 |
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Publisher | Cornell University Library |
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Other format | |
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Language | English |
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Peer reviewed | No |
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NPARC number | 23002894 |
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Export citation | Export as RIS |
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Report a correction | Report a correction (opens in a new tab) |
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Record identifier | 02b20c3e-b3f9-44ee-92e3-2dbe98f871aa |
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Record created | 2018-03-21 |
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Record modified | 2020-05-30 |
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