作者
Shane M Eaton, John P Hadden, Vibhav Bharadwaj, Jacopo Forneris, Federico Picollo, Federico Bosia, Belen Sotillo, Argyro N Giakoumaki, Ottavia Jedrkiewicz, Andrea Chiappini, Maurizio Ferrari, Roberto Osellame, Paul E Barclay, Paolo Olivero, Roberta Ramponi
发表日期
2019/6
期刊
Advanced Quantum Technologies
卷号
2
期号
5-6
页码范围
1970033
简介
Diamond has attracted great interest as a quantum technology platform thanks to its optically active nitrogen vacancy (NV) center. The NV's ground state spin can be read out optically, exhibiting long spin coherence times of ≈1 ms even at ambient temperatures. In addition, the energy levels of the NV are sensitive to external fields. These properties make NVs attractive as a scalable platform for efficient nanoscale resolution sensing based on electron spins and for quantum information systems. Diamond photonics enhance optical interactions with NVs, beneficial for both quantum sensing and information. Diamond is also compelling for microfluidic applications due to its outstanding biocompatibility, with sensing functionality provided by NVs. However, it remains a significant challenge to fabricate photonics, NVs, and microfluidics in diamond. In this Progress Report, an overview is provided of ion irradiation and …
引用总数
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