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Gregory Moille

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Citations 183
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Recent Articles
1.
Flower C, Jalali Mehrabad M, Xu L, Moille G, Suarez-Forero D, Orsel O, et al.
Science . 2024 Jun; 384(6702):1356-1361. PMID: 38900874
On-chip generation of optical frequency combs using nonlinear ring resonators has enabled numerous applications of combs that were otherwise limited to mode-locked lasers. Nevertheless, on-chip frequency combs have relied predominantly...
2.
Stone J, Westly D, Moille G, Srinivasan K
Opt Lett . 2024 Jun; 49(11):3118-3121. PMID: 38824342
Nonlinear microresonators can convert light from chip-integrated sources into new wavelengths within the visible and near-infrared spectrum. For most applications, such as the interrogation of quantum systems with specific transition...
3.
Lu X, Moille G, Li Q, Westly D, Singh A, Rao A, et al.
Nat Photonics . 2024 Apr; 13(9). PMID: 38567245
The ability to spectrally translate lightwave signals in a compact, low-power platform is at the heart of the promise of nonlinear nanophotonic technologies. For example, a device to link the...
4.
Moille G, Westly D, Orji N, Srinivasan K
Appl Phys Lett . 2024 Mar; 119(12). PMID: 38496785
Geometric dispersion in integrated microresonators plays a major role in nonlinear optics applications, especially at short wavelengths, to compensate the natural material normal dispersion. Tailoring of geometric confinement allows for...
5.
Lu X, Moille G, Rao A, Westly D, Srinivasan K
Nat Photonics . 2024 Mar; 15(2). PMID: 38496726
Silicon photonics lacks a second-order nonlinear optical () response in general because the typical constituent materials are centro-symmetric and lack inversion symmetry, which prohibits nonlinear processes such as second harmonic...
6.
Moille G, Lu X, Stone J, Westly D, Srinivasan K
Commun Phys . 2024 Mar; 6. PMID: 38450291
Dispersion engineering of microring resonators is crucial for optical frequency comb applications, to achieve targeted bandwidths and powers of individual comb teeth. However, conventional microrings only present two geometric degrees...
7.
Moille G, Stone J, Chojnacky M, Shrestha R, Javid U, Menyuk C, et al.
Nature . 2023 Dec; 624(7991):267-274. PMID: 38092906
The phase-coherent frequency division of a stabilized optical reference laser to the microwave domain is made possible by optical-frequency combs (OFCs). OFC-based clockworks lock one comb tooth to a reference...
8.
Stone J, Lu X, Moille G, Srinivasan K
Optica . 2023 Feb; 7(12). PMID: 36733410
Optical parametric oscillators are widely used to generate coherent light at frequencies not accessible by conventional laser gain. However, chip-based parametric oscillators operating in the visible spectrum have suffered from...
9.
Perez E, Moille G, Lu X, Stone J, Zhou F, Srinivasan K
Nat Commun . 2023 Jan; 14(1):242. PMID: 36646688
Optical parametric oscillation (OPO) is distinguished by its wavelength access, that is, the ability to flexibly generate coherent light at wavelengths that are dramatically different from the pump laser, and...
10.
Stone J, Moille G, Lu X, Srinivasan K
Phys Rev Appl . 2023 Jan; 17(2). PMID: 36591596
Optical parametric oscillation in a Kerr nonlinear microresonator can generate coherent laser light with frequencies that are widely separated from the pump frequency, allowing, for example, visible light to be...