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Thermal lensing and the Gingin test 1

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Presentation on theme: "Thermal lensing and the Gingin test 1"— Presentation transcript:

1 Thermal lensing and the Gingin test 1
Jérôme Degallaix Gingin international workshop October 2005

2 Presentation of the first test
80 meters long cavity 6W input laser 5kW circulating power Strong thermal lensing Sapphire test mass Diameter: 100 mm Waist size: 8 mm Abs = 50ppm/cm Uniform absoprtion

3 Effect of thermal lensing
Change the apparent ITM Radius Change cavity modes Example: 6W input power, 5kW circulating power Pabsorbed = 2.5 W FITM = 472 m

4 Presentation of the first test
Pcirc Pin Gain = Pcirc / Pin

5 No thermal lensing

6 1W input power

7 2W input power

8 3W input power

9 4W input power

10 5W input power

11 6W input power

12 7W input power

13 8W input power

14 9W input power

15 10W input power

16 Do we need a FFT simulation ?
Thermal lensing deformations: non spherical!

17 Higher order modes comparison

18 Idea of compensation

19 HOM spectrum with CP CP works fine for TEM00
Make higher order mode worst!

20 Problem with the PRC Arm cavity PRC
PRC degenerate  Higher order mode resonant! g factor PRC = Frequency separation between HOM f = 10 kHz ( FWHMPRC = 130 kHz )

21 Make the PRC non degenerate
Arm cavity PRC For example: g =  f = 340 kHz (> 2 * FWHMPRC ) Do not compensate totally thermal lensing fITM = 10 km

22 Compensation plate works (for TEM00)
Need to investigate the behavior of HOM Does not any correct any inhomogeous absorption

23

24 Profile of the deformations
Thermal lensing deformations: non spherical!

25 Circulating power comparison

26 Reflected power

27 Higher order modes comparison

28 Higher order modes comparison

29 4W circulating power profile


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