1 / 10

Mach-Zender interferometer to eliminate sidebands of sidebands for Advanced LIGO

Mach-Zender interferometer to eliminate sidebands of sidebands for Advanced LIGO Osamu Miyakawa, Caltech LIGO- G040279-00-R. Carrier. (Resonant on arms ). -f 2. -f 1. f 1. f 2. Signal extraction of AdvLIGO.

nam
Download Presentation

Mach-Zender interferometer to eliminate sidebands of sidebands for Advanced LIGO

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Mach-Zender interferometer to eliminate sidebands of sidebands for Advanced LIGO Osamu Miyakawa, Caltech LIGO-G040279-00-R Telecon on June, 15. 2004

  2. Carrier (Resonant on arms) -f2 -f1 f1 f2 Signal extraction of AdvLIGO • Two sidebands are used to separate arm cavity signals andCentral part (Michelson, PR, SR) signals. • Arm cavity signals are extracted from beat between carrier and f1 or f2. • Central part (Michelson, PR, SR) signals are extracted from beat between f1 and f2, not including arm cavity information. • Single demodulation • Arms information • L+ and L- • Double/differential demodulation • Central part information • l+ , l- and ls Telecon on June, 15. 2004

  3. Sidebands of sidebands Simulation Real world • Sidebands of sidebands are produced by two series EOMs. • Beats between carrier and f2 +/- f1 disturb central part. • Sidebands of sidebands are amplitude modulation. Carrier Carrier -f2 -f1 f1 f2 -f2 -f1 f1 f2 Telecon on June, 15. 2004

  4. l+ signal with sideband of sideband • No offset • Big disturbance by carrier • Some small disturbance Carrier resonance No offset Telecon on June, 15. 2004

  5. Signal matrix • Original signal matrix • Signal matrix with sideband of sideband Telecon on June, 15. 2004

  6. What should we do? • Continue this optical setting with sidebands of sidebands? • Change experimental setup to kill sidebands of sidebands? Telecon on June, 15. 2004

  7. To eliminate sidebands of sidebands PD • Mach Zehnder interferometer • 1/2 modulation index (1/4 sideband power) • Need one more control • Amplitude noise, frequency noise • Michelson interferometer • Same modulation index as series EOMs • Faraday-isolator • Need one more control • Amplitude noise, frequency noise • 2 more AOM to kill 133MHz and 199MHz • 1/2 carrier power • Need to adjust phase and amplitude • Using a broad band EOM to kill 133MHz and 199MHz • Not easy to kill amplitude modulation EOM EOM PD EOM EOM FI Telecon on June, 15. 2004

  8. Mach-Zehnder on 40m PSL • Control • Using internal modulation with 33MHz Telecon on June, 15. 2004

  9. Other issue • Amplitude noise • Band width=100Hz • Not a problem. • Mode matching • Will be a loss at MC, • not a problem. • Frequency noise • By Doppler shift or beam jitter, not a big issue. • Carrier phase fluctuation caused by shake of EOMs • Will be shown on demodulation phase, probably OK. Telecon on June, 15. 2004

  10. Mach-Zehnder on 40m PSL PMC 166MHz EOM PZT mirror BS1 33MHz EOM 29MHz EOM BS2 To PD Telecon on June, 15. 2004

More Related