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Allan variance
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Allan variance
RIS
0.001
(Research Intensity Score)
Papers
101
Top papers
Photoacoustic spectroscopy and light-induced thermoelastic spectroscopy based on inverted-triangular lithium niobate tuning fork
2025 · 42 citations
Nuclear Clocks and Phase Compatibility
2026
Conjugate phase-noise cancellation enables submicrometre dual-comb ranging with free-running megahertz-linewidth lasers
2026
Sub-megahertz laser stabilization by harnessing orthogonality between the acousto-optic modulator dither and atomic spectroscopy
2025 · 3 citations
An investigation into the impact of optical clock stability on PPP-RTK
2026
A High-Precision Frequency Locking Method Based on All-Phase FFT Demonstrated on a Crystal Oscillator with Rubidium Clock Reference
2026
A High-Precision Frequency Locking Method Based on All-Phase FFT Demonstrated on a Crystal Oscillator with Rubidium Clock Reference
2026
Demonstration of a rubidium optical clock with an improved long-term stability of 6.6×10 −15 at an integration time of 10000 seconds
2026 · 1 citations
Realization of a compact mercury ion microwave clock with frequency stability of 6.3 × 10− 16
2025 · 2 citations
Newest papers
Nuclear Clocks and Phase Compatibility
2026
Conjugate phase-noise cancellation enables submicrometre dual-comb ranging with free-running megahertz-linewidth lasers
2026
An investigation into the impact of optical clock stability on PPP-RTK
2026
A High-Precision Frequency Locking Method Based on All-Phase FFT Demonstrated on a Crystal Oscillator with Rubidium Clock Reference
2026
A High-Precision Frequency Locking Method Based on All-Phase FFT Demonstrated on a Crystal Oscillator with Rubidium Clock Reference
2026
Demonstration of a rubidium optical clock with an improved long-term stability of 6.6×10 −15 at an integration time of 10000 seconds
2026 · 1 citations
PUH Theorem 195 — The NIST-JILA Strontium Optical Lattice Clock at 8.1e-22 Precision as the Instrument Required for PUH E8 Lattice Tension Measurements: Three Specific Predictions for Earth, Aircraft Altitude, and Jupiter Orbit
2026
PUH Theorem 195 — The NIST-JILA Strontium Optical Lattice Clock at 8.1e-22 Precision as the Instrument Required for PUH E8 Lattice Tension Measurements: Three Specific Predictions for Earth, Aircraft Altitude, and Jupiter Orbit
2026
A portable laser-cooled ytterbium beam clock based on an ultra-narrow optical transition
2026
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