Top Tweets for #opticalclocks
An Editors' Pick via #OPG_OpEx: Time-frequency synchronization for distributed phase coherent network based on optically carried satellite navigation signals https://t.co/0cFOFFdGjl #OpticalClocks #PhaseNoise

Via #OPG_Optica: Optical atomic clocks: defining the future of time and frequency metrology https://t.co/AIrpLnIbBc #OpticalClocks #FrequencyCombs @NIST

An Editors' Pick via #OPG_OpEx: Plug-and-play solution for characterizing two-way optical frequency transfer over free-space https://t.co/aZQQq397Gt #Frequency Combs #OpticalClocks

Check out this review in #OPG_AOP: High-precision optical time and frequency transfer #OpticalClocks #FrequencyCombs #Lasers https://t.co/hXGsyFVXlk

Via #OPG_OpEx: Lamb-dip spectroscopy of rotational levels with photomixing terahertz emitter https://t.co/4WmfqEyYd1 #MolecularSpectroscopy #OpticalClocks @KyotoU_News

Via #OPG_OpEx: Deep-ultraviolet second harmonic generation down to 150 nm in a quartz crystal with chirped dual-periodic superstructure https://t.co/Y4fI3tGhPg #OpticalClocks #PhotonCounting @ShandongU

An Editors' Pick via #OPG_OL: Ultra-stable transportable ultraviolet clock laser using cancellation between photo-thermal and photo-birefringence noise https://t.co/2q95VRYFIE #OpticalClocks #UltravioletLasers

Via #OPG_OpEx: Resonant EO combs: beyond the standard phase noise model of frequency combs https://t.co/TujVeuOUQX #OpticalClocks #FrequencyCombs @DTUtweet

#Opticalclocks using high-charged argon ions could be over 1 million times more accurate than the current state of the art
A new article from #EMPIR project #TSCAC, presenting the first realisation of these clocks, has been featured in @Nature
Read more: https://t.co/3XOY0bHsp3

Here we go!
Make sure to visit @MenloSys at @PHOTONICSWORLD at booth A1.323 and booth B2.407 to learn how our lasers serve #QuantumComputing #metrology #opticalclocks and more!
Looking forward to catch-up! @gabriellelasers certainly does as well!

Last week we had the pleasure of welcoming Prof Hidetoshi Katori @UTokyo_News_en to launch testing of world-leading #opticalclocks as part of the International Clock and Oscillator Networking project, which will pave way for standardised #world #time #ICON
https://t.co/t1X5YIVvl1
Via #OPG_Optica: Limits and prospects for long-baseline optical fiber interferometry https://t.co/6k5zdux0FL #GravitationalWaves #OpticalClocks

Transportable #opticalclocks not only will help to improve geodetic measurements – the fundamental properties of the Earth’s shape and gravity variations – but will also serve as precursors to monitor and identify geodynamic signals eg earthquakes and volcanoes at early stages
Next generation #atomicclocks are a step closer to real world applications @quantscitech https://t.co/n9Dy4PPMJ6 https://t.co/kI8ZJCXUpk
At @MenloSys we are proud to provide researchers and technology leaders from industry #Laser systems for advancement of #quantum technologies such as #quantucomputing and #opticalclocks
#Optica #Opticaambassador #CLEO22
At #CLEO22, #CorporateMember @MenloSys Director of Sales & Service Simon Kocur shares how Menlo meets the worldwide demand for quantum technology including optical clocks & quantum computing.
Watch the full highlight for more details on the exhibition - https://t.co/CC4SsWI0tc

We're excited about our new @EPSRC funded project -International Clock and Oscillator Networking (ICON)- which will bring together world-leading transportable #opticalclocks and world-leading optical link #space infrastructure to explore the limits of precision time transfer
A team will develop transportable optical clocks, which can provide unmatched precision in timekeeping for uses from navigation to ultra-fast broadband. Led by @Sensors_QTHub at @unibirmingham with @UniofNottingham, @NPL, @riken_en, @English_IMSUT, @HHU_de, @ptb_q5, @TU_Muenchen

Developing pioneering solutions with the technologies of tomorrow: the @EPSRC funded ICON project brings together world-leading transportable #opticalclocks + optical link #space infrastructure to explore the limits of precision time transfer
https://t.co/VcEmsuwS8A
The second is a fundamental unit that underpins timekeeping around the world. One of our #EUfunded projects played a key role in helping to redefine the second using #opticalclocks – an incredible research feat that's been highlighted by @NaturePhysics!
➡️https://t.co/Ys0sy2gtNi

View Spotlight Analysis of the #OSA_JOSA_B paper FOKUS II—Space flight of a compact and vacuum compatible dual frequency comb system https://t.co/VzHgYrrWZq Spotlight Summary by Nathan Newbury #FrequencyCombs #OpticalClocks

Via #OSA_Optica: Thermal intermodulation noise in cavity-based measurements https://t.co/5IeozVCAU1 #CavityQED #QuantumOptics #OpticalClocks @EPFL_en @UAZOpticalSci

Yesterday @KaiBongs participated in a international workshop on forefront #opticallattice clocks hosted by @UTokyo_News_en and @riken_en. Read more about how #opticalclocks are set to revolutionise timekeeping with their incredibly high levels of precision https://t.co/7OjIEPxKWI
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