+ All Categories
Home > Documents > Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1 Stabilising the...

Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1 Stabilising the...

Date post: 11-Jan-2016
Category:
Upload: marjorie-baker
View: 213 times
Download: 1 times
Share this document with a friend
Popular Tags:
23
Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1 http://10m-prototype.aei.uni-hannover.de Stabilising the distance of 10 m separated optical tables to 100 pm/sqrt(Hz) AEI 10m Prototype
Transcript
Page 1: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Katrin Dahl for the AEI 10 m Prototype teamMarch 2010 – DPG Hannover Q29.1

http://10m-prototype.aei.uni-hannover.de

Stabilising the distance of 10 m separated optical tables to 100 pm/sqrt(Hz)

AEI 10m Prototype

Page 2: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

2

Prototype hall

11.65 m

11.6

5 m

Page 3: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

3

For details on tables see talk

Q29.4Residual table motion

Page 4: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

4

Longitudinal motion stabilised

Page 5: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

5

Relative table motion stabilised

Page 6: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Why distance stabilisation of tables?

The AEI 10 m Prototype will provide ultra-low displacement noise testing environment• To probe at (and later go beyond) the standard quantum limit • Entanglement of macroscopic test masses• For GRACE follow-on and LISA related experiments • ...

6

For details see talk Q29.5

Page 7: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

(Homodyne) Mach-Zehnder interferometry

7

Page 8: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Heterodyne Mach-Zehnder interferometry

• No specific lock point Enables to track table

motion over more than one wavelength

• Control bandwidth 100 Hz heterodyne frequency

of about 19 kHz

• Use of in-house knowledge (LISA Pathfinder technology)

8

Page 9: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Optical layout

9

• Heterodyne Mach-Zehnder IFOs with unequal arm lengths (by 23m)

• Stable laser required to reach design sensitivity of 100 pm/sqrt(Hz)@10 mHz – iodine stabilized Nd:YAG

Page 10: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Optical layout

10

• Thermal drifting requires components to be bonded onto a Clearceram (CTE=0.4*10-7/K) baseplate by hydroxide-catalysis bonding technique.

• Beam height 45 mm

• Use of quadrant photodiodes

Page 11: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

11

4 Interferometers

Page 12: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

12

Monitoring of • power fluctuations• beam pointing

Power monitor

Page 13: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

13

Reference IFO

Page 14: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

14

Diagnostic IFO

Page 15: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

15

West IFO

Page 16: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

16

South IFO

Page 17: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Test setup

17

Page 18: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Optical layout

18

Page 19: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Longitudinal displacement

19

Page 20: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Pitch

20

Page 21: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Yaw

21

Page 22: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

Blind test

22

Page 23: Katrin Dahl for the AEI 10 m Prototype team March 2010 – DPG Hannover Q29.1  Stabilising the distance of 10 m separated.

23

Thank you for your attention http://10m-prototype.aei.uni-hannover.de


Recommended