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| ## page was renamed from Upgrade 08/Overview | <<TableOfContents([2])>> ----- |
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| == Demonstration of the AdvLIGO interferometer technologies == === Prototyping of AdvLIGO LSC === |
----- == To demonstrate AdvLIGO interferometer technologies == === ►Prototyping of AdvLIGO LSC === |
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| === Tuned / Detuned RSE comparison === | === ►Tuned / Detuned RSE comparison === |
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| === RGC based digital control system === | === ►RGC based digital control system === |
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| ----- | |
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| === DC&Dither technologies === | === ►DC&Dither technologies === |
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| === Interferometer Diagnosis === Cavity characterization using aux. laser injection "Provide a method of precise in-situ characterization of the interferometer" |
=== ►Interferometer Diagnosis === * Cavity characterization using aux. laser injection * "Provide a method of precise in-situ characterization of the interferometer" |
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| - Development / test bench of advanced technologies GigE CCD WFS technique Adaptive noise cancellation "Demonstrate how it works" "Understand and improve its limitations" |
=== ►Development / test bench of advanced technologies === * GigE CCD WFS technique * Adaptive noise cancellation * "Demonstrate how it works" * "Understand and improve its limitations" ----- ----- = Major things to be upgraded = ----- == Interferometer design == === ►Interferometer design === * AdvLIGO like optical configuration / sensing scheme * Arm finesse of about 450 * 2 Phase modulations (11MHz & 55MHz), no Mach Zehndar * Longer PRC/SRC => Use of Folding mirror * PR gain decided for carrier, SR gain decided by sensitivity * Small asymmetry, extraction of f2 by a undercoupled SEC => good through put of f2 to the dark port * Use of third harmonic demodulation scheme * Links to [Optical Configuration][Power Budget][Optical Layout][PRC/SRC design][Sensing scheme][Lock Acquisition scheme] * Tuned or detuned? * Tuned / offset detuning What should be compared? == Optics == == CDS (Control and Data System) == |
<<TableOfContents: execution failed [Argument "maxdepth" must be an integer value, not "[2]"] (see also the log)>>
Purpose of the upgrade
To demonstrate AdvLIGO interferometer technologies
►Prototyping of AdvLIGO LSC
Lock acquisition
- "Prove AdvLIGO LSC actually works"
Green laser locking
- "Realize lock of the arms independently from the main beam"
"Achieve semi-deterministic lock & smooth handing off"
Noise mechanisms / DC readout
- "Discover and/or confirm by a model RSE specific noise couplings"
►Tuned / Detuned RSE comparison
- "Address advantage and disadv. of the tuned/detuned configuration"
- "Demonstrate smooth transition"
►RGC based digital control system
- "Demonstrate complicated LSC code on the connected multiple systems"
- "Establish rapid prototyping methods with simulated plants on the processors"
To do anything useful to make the AdvLIGO easier / faster
►DC&Dither technologies
- Offset lock and handoffs
- AF WFS technique
- "Develop and characterize various new useful techniques"
►Interferometer Diagnosis
- Cavity characterization using aux. laser injection
- "Provide a method of precise in-situ characterization of the interferometer"
►Development / test bench of advanced technologies
- GigE CCD WFS technique
- Adaptive noise cancellation
- "Demonstrate how it works"
- "Understand and improve its limitations"
Major things to be upgraded
Interferometer design
►Interferometer design
- AdvLIGO like optical configuration / sensing scheme
- Arm finesse of about 450
2 Phase modulations (11MHz & 55MHz), no Mach Zehndar
Longer PRC/SRC => Use of Folding mirror
- PR gain decided for carrier, SR gain decided by sensitivity
Small asymmetry, extraction of f2 by a undercoupled SEC => good through put of f2 to the dark port
- Use of third harmonic demodulation scheme
- Links to [Optical Configuration][Power Budget][Optical Layout][PRC/SRC design][Sensing scheme][Lock Acquisition scheme]
- Tuned or detuned?
- Tuned / offset detuning What should be compared?
Optics
