Publication Update No. 4

In the time from 14th of March to 31st of March the following papers were published (in no particular order):

Kerr comb specific:

C. Joshi, et al., Arxiv: 1603.07305: Thermally Controlled Comb Generation and Soliton Modelocking in Microresonators

C. Lecaplain, et al., Arxiv: 1603.07305: Mid-Infrared ultra-high-Q resonators based on fluoride crystalline materials

K. Y. Yang, et al., Nature Phot., Broadband dispersion-engineered microresonator on a chip

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Publication Update No. 3

In the time from 2th of March to 13th of March the following papers were published (in no particular order):

Kerr comb specific:

R. Mandel, W. Reichel, Arxiv: 1603.02206: A priori bounds and global bifurcation results for frequency combs modeled by the Lugiato-Lefever equation

M. Karpov, et al. PRL, 116, 103902: Raman Self-Frequency Shift of Dissipative Kerr Solitons in an Optical Microresonator

Y. K. Chembo, PRA, 93, 033820: Quantum dynamics of Kerr optical frequency combs below and above threshold: Spontaneous four-wave mixing, entanglement, and squeezed states of light

C. Reimer, et al., Science 351, 1176: Generation of multiphoton entangled quantum states by means of integrated frequency combs

P.-H. Wang, et al., Arxiv:1603.03154: Intracavity characterization of micro-comb generation in the single-soliton regime

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Publication Update No. 2

In the time from 13th of February to 1st of March the following papers were published (in no particular order):

Kerr comb specific:

H. Taheri, et al., Arxiv: 1602.08523: Self-synchronization of Kerr-nonlinear Optical Parametric Oscillators

T. Hansson, et al., Arxiv:1602.08087: Single envelope equation modelling of multi-octave comb arrays in microresonators with quadratic and cubic nonlinearity

P. Parra-Rivas et al., Arxiv: 1602.07068: Origin and stability of dark pulse Kerr combs in normal dispersion resonators

X. Xue et al., Optics Exp. 24, 687: Thermal tuning of Kerr frequency combs in silicon nitride microring resonators

R. Wang, Microwave and Optical Technology Let. 58, 919: Modeling of two-pump optical frequency comb generation in monolithic silicon nitride ring resonator

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