2016
DOI: 10.1038/nphoton.2016.105
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Phase-coherent microwave-to-optical link with a self-referenced microcomb

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Cited by 169 publications
(88 citation statements)
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References 38 publications
(36 reference statements)
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“…However, these techniques usually result in elaborate optical systems. More recently, new routes promising chip-scale comb generators have been investigated based on optically-pumped ultra-high-quality-factor crystalline microresonators [14][15][16] and on broadband quantum cascade lasers (QCLs) with specially designed multistage active regions 10,17 . In both cases the essential underlying mechanism responsible for the generation of OFCs is cascaded four-wave mixing (FWM) enabled by a third-order χ (3) Kerr nonlinearity.…”
Section: Several Techniques To Generate Optical Frequency Combs (Ofcsmentioning
confidence: 99%
“…However, these techniques usually result in elaborate optical systems. More recently, new routes promising chip-scale comb generators have been investigated based on optically-pumped ultra-high-quality-factor crystalline microresonators [14][15][16] and on broadband quantum cascade lasers (QCLs) with specially designed multistage active regions 10,17 . In both cases the essential underlying mechanism responsible for the generation of OFCs is cascaded four-wave mixing (FWM) enabled by a third-order χ (3) Kerr nonlinearity.…”
Section: Several Techniques To Generate Optical Frequency Combs (Ofcsmentioning
confidence: 99%
“…Direct soliton generation from an ultra-stable pump laser holds potential for compact and powerful optical-to-microwave dividers. Although self-referenced optical microcombs and clocks have been demonstrated [18][19][20] , optical frequency division for ultralow-noise microwave generation using such devices has not been demonstrated so far, mainly due to the complex crosstalk occurring between their two degrees of freedom 19,21 and the limited performance of the available actuators 17,22 .…”
Section: Introductionmentioning
confidence: 99%
“…Combs with FSR ranging from 1 GHz to 1 THz have been reported in microresonators [9,10]. This technology also offers the possibility of on-chip integration [9], self-referencing [11] and promising prospects for microwave photonics [12], dual-comb spectroscopy [13] and coherent optical telecommunications [14,15]. However, similarly to femtosecond frequency combs, the FSR is directly fixed by the length of the resonator.…”
Section: Introductionmentioning
confidence: 99%