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| Main Authors: | , , , , , , , , , , , , , , |
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| Format: | Preprint |
| Published: |
2024
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| Subjects: | |
| Online Access: | https://arxiv.org/abs/2408.01572 |
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| _version_ | 1866910643382124544 |
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| author | Sledz, Florian Khramtsov, Igor A. Flatae, Assegid M. Lagomarsino, Stefano Sciortino, Silvio Nicley, Shannon S. Rouzbahani, Rozita Pobedinskas, Paulius Guo, Tianxiao Jiang, Xin Kienitz, Paul Bolivar, Peter Haring Haenen, Ken Fedyanin, Dmitry Yu. Agio, Mario |
| author_facet | Sledz, Florian Khramtsov, Igor A. Flatae, Assegid M. Lagomarsino, Stefano Sciortino, Silvio Nicley, Shannon S. Rouzbahani, Rozita Pobedinskas, Paulius Guo, Tianxiao Jiang, Xin Kienitz, Paul Bolivar, Peter Haring Haenen, Ken Fedyanin, Dmitry Yu. Agio, Mario |
| contents | A robust quantum light source operating upon electrical injection at ambient conditions is desirable for practical implementation of quantum technologies, such as quantum key distribution or metrology. Color centers in diamond are promising candidates as they are photostable emitters at room and elevated temperatures. The possibility of their electrical excitation has already been demonstrated within p-i-n diodes. However, this requires the growth of complex diamond structures. In contrast to these conventional approaches, we demonstrate the emission of color centers under electrical pumping in a novel Schottky diode configuration based on hydrogen passivated n-type diamond, which holds promise for integrated single-photon emitting devices based on color centers in diamond. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2408_01572 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Electrical excitation of color centers in phosphorus-doped diamond Schottky diodes Sledz, Florian Khramtsov, Igor A. Flatae, Assegid M. Lagomarsino, Stefano Sciortino, Silvio Nicley, Shannon S. Rouzbahani, Rozita Pobedinskas, Paulius Guo, Tianxiao Jiang, Xin Kienitz, Paul Bolivar, Peter Haring Haenen, Ken Fedyanin, Dmitry Yu. Agio, Mario Applied Physics Quantum Physics A robust quantum light source operating upon electrical injection at ambient conditions is desirable for practical implementation of quantum technologies, such as quantum key distribution or metrology. Color centers in diamond are promising candidates as they are photostable emitters at room and elevated temperatures. The possibility of their electrical excitation has already been demonstrated within p-i-n diodes. However, this requires the growth of complex diamond structures. In contrast to these conventional approaches, we demonstrate the emission of color centers under electrical pumping in a novel Schottky diode configuration based on hydrogen passivated n-type diamond, which holds promise for integrated single-photon emitting devices based on color centers in diamond. |
| title | Electrical excitation of color centers in phosphorus-doped diamond Schottky diodes |
| topic | Applied Physics Quantum Physics |
| url | https://arxiv.org/abs/2408.01572 |