csoc-project.eu - CHIP-SCALE ATOMIC OPTICAL CLOCK - Chip-Scale Atomic Optical Clock

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Micro-transfer printing enables full integration CSOC will employ micro-transfer printing as the key technological framework for combining multiple functional technologies for frequency comb generation on a Silicon Nitride waveguide interposer. Heterogeneously integrated III/V quantum dot mode-locked laser It is well known that quantum dot based optical layers offer important advantages for realizing integrated mode-locked lasers such as broadband gain, and high power. Thus far the lower quality substrate o

SiN Resonator - dispersion engineered For achieving an octave-spanning soliton, the waveguide group velocity dispersion (GVD) will be minimized while remaining anomalous. The lower the GVD becomes, the more prominent the effects of higher third-order and fourth-order dispersion become. These terms result in the coherent enhancement of the ends of the spectrum, in what is known as dispersive wave formation (DW) or Cherenkov radiation. DW effectively prevent the comb bandwidth from being extended further, but

In a first stage, devices will be prototyped separately, where they benefit from low propagation losses for the external cavities.

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