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Output mode cleaner status

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... Joe B, Stefan B, Valera, Bill K, Virginio, Jay, PeterK, Robert S, Nergis, PeterF) ... Blue: AS3. Red: AS2 (OMC) LIGO I. 7. Effect on AS_I signal. Factor of ... – PowerPoint PPT presentation

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Title: Output mode cleaner status


1
Output mode cleaner status
  • June 7th, 2004
  • (Keita, Luca, Joe B, Stefan B, Valera, Bill K,
    Virginio, Jay, PeterK, Robert S, Nergis, PeterF)

2
OMC setup
OMC
3
The bottom lineexcess noise introduced
?!
4
OMC locking error signals
  • Dither MC length (40 kHz)
  • Maximizing total power pulls the resonance
    toward the stronger SB, creates an even larger SB
    asymmetry
  • Maximizing 2fmoc power SBs pass symmetrically on
    either side of resonance center carrier is on
    resonance center
  • AS_I
  • Makes SBs at OMC output be balanced
  • In practice, electronic AS_I servo is still
    connected (30 Hz BW), and the error signal for
    the OMC lock is taken from the AS_I correction
    signal, and applied to OMC with low bandwidth
    (0.1 Hz BW)
  • All 3 have been tried, dont know whether AS_I or
    dither/2fmoc is better

5
Effect on couplings (locked using AS_I)
  • When DARM is locked using AS3 (non-OMC beam),
    there is an AS2_Q offset corresponding to 10-12
    m!
  • Laser amplitude noise sensitivity is reduced at
    high frequencies
  • Presumably, coupling through frequency noise
    becomes important at low freqs isnt affected
    by the OMC

6
Effect on couplings (contd)
  • Oscillator phase noise w/ OMC locked on AS_I

Green original measurement Blue AS3 Red AS2
(OMC)
7
Effect on AS_I signal
Factor of 7 decrease with OMC
8
The excess noise
9
Acoustic in nature
With injections
ASPD2
No injections
ASPD3
10
What can it be?
  • The same whether the OMC is
  • In vacuum or not (0.1mTorr) with its suspension
  • Mounted on rigid block in air
  • Beam clipping?
  • Seems not to be the case aperture test on
    optical elements and OMC
  • Back scattering?
  • Unlikely since ASPD3 is not contaminated
  • OMC length fluctuations?
  • Noise contribution is not limiting now (measured
    using AS2I to estimate the OMC length
    fluctuations)
  • Beam jitter?
  • High order modes (TEMxy) transmitted by OMC a
    problem?
  • ?

11
Beam jitter injection
  • Highly sensitive to tapping of optics
  • With significant acoustic injections, the excess
    noise could be accounted by beam jitter

12
Beam jittercouplings
  • Significant angle-to-displacement coupling
  • With pitch/yaw stabilization (5Hz)
  • Theta_div3mrad
  • Estimate of vertical displacement at OMC waist
  • (RMS at OMC waist) 30 of waist, no pitch/yaw
    stabilization
  • Beam stabilization (lt5Hz, pitch and yaw of one
    steering mirror) no effect on noise
  • Repeat with 4 DOFs? Increase BW (how)? Increase
    noise and then stabilize?
  • Angle dithering, minimizing 1 omega coupling no
    effect
  • Repeat with 4 DOFs?

13
High order modes transmitted?
  • Idea could an high order mode (TEM) be
    transmitted by the OMC and significantly
    contribute to the noise?

14
Modal composition of dark fringe
TEM00
TEM00
Dangerous?
  • 8th order mode (nm8, odd) close to TEM00 is it
    a problem?
  • Could experiment with a different output mode
    cleaner -- different g factor (g0.3 -gt 0.41)

15
Recent observations
  • Misalign OMC transmitted beam so that the PD2 DC
    voltage drops by ½
  • Compare ASD of AS2_Q with and without the change
  • Account for gain change
  • Light level dropped by 2x (as seen by the DC
    voltage reading)
  • But calibration line dropped by 5x (?)
  • Adjusted spectra by 5x
  • Spectra very similar (apart from a few peaks that
    disappeared in the misaligned spectra)

16
Recent Observations
  • Placed Iris in front of OMC
  • Closed the Iris around beam until spectrum
    changed
  • Calibration line was reduced by 4.7x, spectra was
    scaled and compared with no Iris
  • Result
  • lt80Hz the spectra are similar
  • gt80Hz significant change
  • Note the Iris is spatially filtering the beam,
    reducing the power of higher order modes
  • Note plexiglass in beam to OMC visibly modified
    the beam on transmission (CDD) but no perceivable
    change in AS2Q (using headset)

17
Recent Observations
  • New mode-matching
  • moved OMC by 1.5cm
  • Michelson bright fringe efficiency 70 -gt 80
  • Table/electronics clean-up
  • Placed 2 PZT actuated steering mirrors
  • 4x light attenuation on both AS2 and AS3, OMC not
    locked, locked on AS3
  • Overall noise floor the same but structures are
    different (60Hz due to PZTs)
  • 1200Hz broad structure gone
  • 4-5kHz structure appeared

18
Other tests?
  • Could dither 4 angles, minimizing 1 omega and
    tracking the noise floor
  • But one axis of PZT actuated mirror broken
  • Replace OMC end mirror with new one?
  • Could inject significant acoustic noise so that
    quad diode senses jitter at high frequency,
    stabilize the beam at high frequency and measure
    AS2_Q?
  • But running out of ideas.

19
Considerations for new design
  • Cavity bandwidth could be narrower to attenuate
    the RF SBs
  • Limited by sensitivity to OMC length fluctuations
  • Gregg Hs coating thermal noise estimate 10-17
    m/rtHz, versus 10-16 m/rtHz reqd for present
    design
  • Decrease BW by factor of 2 -gt SB power decreased
    by factor of 2
  • Keep finesse the same (40) and reduce BW by
    lengthening cavity ?
  • PZT could have much smaller range (presumably
    could be stiffer)
  • Bigger mirrors, bigger bore in spacer

20
Next ?
  • Need to understand noise source, but even so,
    dont see how acoustic couplings and/or noise is
    going to be reduced by a factor of 1000.
    Options
  • Entire AS port LSC detection chain in vacuum
  • Forget the OMC, and make many more LSC
    photodetectors
  • Pursue fabrication of our own OMC, or is it too
    early?
  • Callum Janeen have started on a suspension
    design, soft in all directions

21
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