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1. Excess noise and photo-induced effects in highly reflective crystalline mirror coatings

2. A transportable clock laser system with an instability of $1.6 \times 10^{-16}$

3. A transportable interrogation laser system with an instability of $\mathrm{mod}\,\sigma_{\rm y} = 3\times10^{-16}$

4. A high-performance optical lattice clock based on bosonic atoms

5. Geodesy and metrology with a transportable optical clock

6. Noise and instability of an optical lattice clock

7. 8E-17 fractional laser frequency instability with a long room-temperature cavity

8. A compact, robust, and transportable ultra-stable laser with a fractional frequency instability of $1\times10^{-15}$

9. Nietzsches Literaturen

10. A strontium lattice clock with $3 \times 10^{-17}$ inaccuracy and its frequency

12. Geodesy and metrology with a transportable optical clock

14. Excess noise in highly reflective crystalline mirror coatings

18. Meander Designer : Automatically Generating Meander Channel Designs

19. Optical Atomic Clocks: From International Timekeeping to Gravity Potential Measurement

21. Remote Optical and Fountain Clock Comparison Using BroadbandTWSTFT and GPS PPP

22. Ultra-stabile Lasersysteme für Weltraum- und Bodenanwendungen

23. A clock network for geodesy and fundamental science

24. Ultra-stable clock laser system development towards space applications

25. Ultra-stable clock laser system development towards space applications

26. A transportable optical lattice clock

27. Realization of a timescale with an accurate optical lattice clock

32. A strontium lattice clock with 3 × 10−17inaccuracy and its frequency

34. A compact, robust, and transportable ultra-stable laser with a fractional frequency instability of 1 x 10-15.

35. Ultra-stable clock laser system development towards space applications

36. A strontium lattice clock with 3 × 10−17 inaccuracy and its frequency.

37. A compact, robust, and transportable ultra-stable laser with a fractional frequency instability of 1 x 10-15.

38. Thermal noise and mechanical loss of SiO 2 /Ta 2 O 5 optical coatings at cryogenic temperatures.

39. Transportable interrogation laser system with an instability of mod σ y  = 3 × 10 -16 .

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