Thomas Jefferson National Accelerator Facility S. Nanda, July 28, 2006 1 Hall A Compton Polarimeter Upgrade Sirish Nanda Jefferson Laboratory PRex Collboration.

Slides:



Advertisements
Similar presentations
TWO STEP EQUATIONS 1. SOLVE FOR X 2. DO THE ADDITION STEP FIRST
Advertisements

INFN Milano, Universita` degli Studi Milano Bicocca Siena IPRD May Testbeam results of the CMS electromagnetic calorimeter Alessio Ghezzi.
Bob MichaelsParity Collab. Mtg. May 17, `07 Integrating Compton DAQ and Analysis Bob Michaels with Reminder about Nov 2006 Results Specification of new.
Cavity Locking by Piezo-Driven Mirror Botao Jia Duke University Advisor: Dr. Nanda Sirish HAPPEX Collaboration Meeting Dec 1, 2006.
PPLN Frequency- Doubling Project Diana Parno Hall A Parity Collaboration Meeting May 17, 2007.
Green cavity progress Botao Jia May Advisors: Dr. Nanda Sirish, Dr. Wu Ying HAPPEX Collab. Mtg. May 17-18, 2007.
Polarized 3 He Target for A1n-A J. P. Chen, June 11, 2013, Hall A Meeting Overview Design Progress Progress in target lab Progress from users.
BigBite Wire-Chamber Status Report Brandon Craver University of Virginia Hall A Collaboration Meeting June 23, 2005.
CAVITY LOCK ELECTRONICS Dan Sexton, Sirish Nanda, and Abdurahim Rakhman.
Hall A Collaboration meeting January 5 th 2007 A. Camsonne Compton Polarimeter Status Report Alexandre Camsonne Hall A Collaboration Meeting January 4.
The High-finesse Fabry-Perot Cavity
Hall A Collaboration Meeting S. Nanda, June 23, 2005 Hall A Compton Polarimeter For Hall A Collaboration Meeting June 23 rd 2005 Sirish Nanda Thomas Jefferson.
May 17th 2007 Happex Collaboration Meeting 1 Compton polarimeter Electron detector upgrade and status PREX/Happex Collaboration Meeting May 17 th 2007.
Thomas Jefferson National Accelerator Facility S. Nanda, December 5, Hall A Compton Polarimeter Sirish Nanda Jefferson Laboratory Hall A Collboration.
Compton integrating method Beam test summary PREX/Happex Collaboration Meeting Alexandre Camsonne.
Thomas Jefferson National Accelerator Facility S. Nanda, June 22, The Hall A Compton Polarimeter Sirish Nanda Jefferson Laboratory Hall A Collaboration.
Green Compton Polarimeter Upgrade For Hall A Collaboration Meeting December 16 th 2004 Deepa Graduate Old Dominion University Graduate Student.
Lead ( 208 Pb) Radius Experiment : PREX E = 1 GeV, Elastic Scattering Parity-Violating Asymmetry PREX : precise measurement of the density -dependence.
PREX main detector Piotr Decowski Aimee Shore Smith College Piotr Decowski Aimee Shore Smith College Kumar Krishna Jon Wexler Patrick Rogan Vireak Yim.
Jeopardy Q 1 Q 6 Q 11 Q 16 Q 21 Q 2 Q 7 Q 12 Q 17 Q 22 Q 3 Q 8 Q 13
Stefan Hild, Andreas Freise University of Birmingham Roland Schilling, Jerome Degallaix AEI Hannover January 2008, Virgo week, Pisa Advanced Virgo: Wedges.
Stefan Hild for the GEO600 team October 2007 LSC-Virgo meeting Hannover Homodyne readout of an interferometer with Signal Recycling.
EIS/Solar-B: EIS information that was sent to System Side EIS subsystems: EIS consists of three EIS subsystems. (a) STR: Structure, (b) HAR: Harness, (c)
Coherent and Electro-Optics Research Group (CEORG)
Speaker: Tzung Da Jiang Adviser : Dr. Ja-Hon Lin
S. N. HOM Impedance in Vacuum … 1 of 40 Sasha Novokhatski SLAC, Stanford University Machine-Detector Interface Joint Session April 22, 2005 HOM Impedance.
Center for Radiative Shock Hydrodynamics Fall 2011 Review Experimental data from CRASH experiments Carolyn Kuranz.
J.T. Hodges, D.A. Long, G.W. Truong, K.O. Douglass,
Chiu Choi, Ph.D., P.E. Technical Consultant OIML workshop on the metrology of vehicle speed measurement devices NIST Headquarters, Gaithersburg, MD July.
Vladimir G. Niziev NATIONAL UNITED UNIVERSITY Miao-li, Taiwan Selected slides from course of lectures.
19. October 2004 A. Freise Automatic Alignment using the Anderson Technique A. Freise European Gravitational Observatory Roma
The GEO 600 Detector Andreas Freise and the GEO 600 Team University of Hannover May 20, 2002.
FAR-IR OPTICS DESIGN AND VERIFICATION EXPERIMENTAL SYSTEM AND RESULTS Final Meeting “Far-IR Optics Design and Verification”, Phase 2 27 November 2002,
Stefan Hild, M.Mantovani, A.Perreca and A. Freise Advanced Virgo meeting, August 2008 Automated simulations: choosing modulation frequencies à la Advanced.
David Johnson Diagnostics Team Leader
1 LOA-ENSTA. 2 3 For PW class laser, a contrast better than is required I ASE has to be < W/cm² The ASE intensity is enough to generate.
HyCal reconstruction: current situation current situation and future tasks. V. Mochalov, IHEP (Protvino)
25 seconds left…...
Week 1.
COMPTON POLARIMETRY Analysis status Scaling laws 3 GeV Toward 850 MeV.
Brookhaven Science Associates U.S. Department of Energy Todd Satogata 1 Fri May RHIC FY03 Deuteron-Gold Performance n RHIC Deuteron-Gold Performance.
Results from first tests of TRD prototypes for CBM DPG Frühjahrstagung Münster 2011 Pascal Dillenseger Institut für Kernphysik Frankfurt am Main.
CSC Test Beam Data Analysis Alexander Khodinov and Valeri Tcherniatine.
CAVITY RING DOWN SPECTROSCOPY
Compton polarimetry for EIC Jefferson Lab Compton Polarimeters.
A_RD_01 Applications of a high finesse Fabry Perot Cavity for the ILC ► Introduction ► Status of the cavity R&D – at ATF – at LAL/Orsay French Labs. :
Thermally Deformable Mirrors: a new Adaptive Optics scheme for Advanced Gravitational Wave Interferometers Marie Kasprzack Laboratoire de l’Accélérateur.
Polarization-preserving of laser beam in Fabry Perot Cavity Accelerator center, IHEP Li Xiaoping.
Installation of a Four-mirror Fabry-Perot cavity at ATF 1.Our setup/goal 2.Why 4 mirrors ? 3.The ATF 4-mirror cavity 4.The optical scheme 5.The laser/cavity.
Thomas Jefferson National Accelerator Facility S. Nanda, July 22, The Hall A Compton Polarimeter Upgrade Sirish Nanda Jefferson Laboratory Parity.
1 Plans for KEK/ATF 1. Introduction 2. Related Instrumentations at ATF 3. Experimental Plans for Fast Kicker R&D at ATF Junji Urakawa (KEK) at ILC Damping.
LPOL-cavity Introduction Tests at Orsay Optics (laser polarisation) Calorimeter DAQ Mechanics & installation at DESY  Norbert’s talk.
COMPTON POLARIMETRY Collected data Cavity power Status on counting methods Systematic errors and hardware issues.
S. De Santis “Measurement of the Beam Longitudinal Profile in a Storage Ring by Non-Linear Laser Mixing” - BIW 2004 May, 5th Measurement of the Beam Longitudinal.
Compton polarimetry for EIC Jefferson Lab Compton Polarimeters.
LIGO-G0200XX-00-M LIGO Scientific Collaboration1 First Results from the Mesa Beam Profile Cavity Prototype Marco Tarallo 26 July 2005 Caltech – LIGO Laboratory.
Status of the Advanced LIGO PSL development LSC Virgo meeting, Caltech, March 2008 LIGO G Z Benno Willke for the PSL team.
Apollo Go, NCU Taiwan BES III Luminosity Monitor Apollo Go National Central University, Taiwan September 16, 2002.
Status of the Advanced LIGO PSL development LSC meeting, Baton Rouge March 2007 G Z Benno Willke for the PSL team.
EIC Compton detector update October 24 th 2014 Alexandre Camsonne.
The Hall A Compton Polarimeter Upgrade
Compton polarimetry for EIC. Outline Polarized electron beam Compton process Compton polarimeters at Jefferson Laboratory – Parity experiments at Jlab.
Thomas Jefferson National Accelerator Facility Page 1 John LeRose Independent Project Review of 12 GeV Upgrade Jefferson Lab September 22-24, 2009 Physics.
10-meter Interferometer Results M. Woods (special thanks to Steve Myers and Tim Slaton) Jan. 31, 2000 Commissioning Setup System Noise Monte Carlo simulation.
Compton Gamma-ray Generation Experiment by Using an Optical Cavity in ATF POSIPOL 2007 Workshop at LAL Hirotaka Shimizu Hiroshima University.
Pb-Parity and Septum Update Presented by: Luis Mercado UMass - Amherst 12/05/2008 Thanks to Robert Michaels, Kent Pachke, Krishna Kumar, Dustin McNulty.
Status of Polarimeters and Polarized Targets: what are the plans for development of polarized targets to meet the needs of the Day 1 and future experimental.
Hall A Compton Electron detector overview
ERL BPM System Mike Billing, Mark Palmer
First Results from the Mesa Beam Profile Cavity Prototype
Presentation transcript:

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Hall A Compton Polarimeter Upgrade Sirish Nanda Jefferson Laboratory PRex Collboration Meeting July 28, 2006

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Compton Polarimeter Upgrade Motivation: 1.5kW Green Fabry-Perot Cavity Twice the Analyzing power of present IR cavity Four-fold increase in Figure-of-Merit Improve accuracy of experiments by providing 1% beam polarimetery down to 1 GeV. High precision Parity violating experiments are feasible with this upgrade New Electron Detector High resolution silicon microstrips to improve tracking resolution Integrating Photon Detector Improve systematic uncertainties experienced in the counting method Participating Institutions: Jefferson Lab, Saclay, Syracuse, Clermont-Ferrand, UVa Scope:

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Expected Performance Simulation by David Lhuillier < 1% GeV obtained in about 4 hrs with 50 uA beam

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Optical Setup Laser frequency is continuosly tuned to lock to Fabry-Perot Cavity

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, New Compton Lab Compton Polarimetry Lab New green laser lab (shared by Halls A & C) In ARC Building Rooms L310 and L312 L310 is laser controlled area, L312 is office/control room Lab Status Occupancy in Nov 05 Infrastructure completed in May 06 Cleared for Laser Safety (LSOP approval) June 06 The CPL is now fully Operational

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, The Compton Team

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Prometheus Green Laser W W Manufacturer: Innolight GmbH, Germany 708 nm Pump Diodes (2) 1064 nm Nd:YAG 532 nm SHG via PPKTP

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Green Fabry-Perot Cavity Fixed mirror distance 2 Axis adjustable mirror mount 2 Axis adjustable stands UHV compatible Intra-cavity power 1.5 kW The Mirrors (source Research Electo Optics) Dielectric super mirrors Reflectivity > % Finesse > 50,000 Loss < 20 ppm ROC 50 cm Design Goal: Improve upon Saclay IR cavity non-adjustable mirror design, while keeping mirror distance fixed.

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Production Cavity

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Cavity Mirror Mount

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Fabry-Perot basics Wave equation looks like harmonic oscillator: Solutions for x and y are Hermite-Gauss polynomials Longutunal Modes Transverse Mode

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Resonances in Prototype Cavity Resonance Scan Tunable laser Slow thermal mode Tuning Coefficient -6 GHz/K Injection Power 20 mW External ramp voltage 10 mHz, 110 mVPP Laser temperature varied 28.32C to 28.38C TEM 00 Resonance observed at every 3.5s Transmission Photodiode signal Frequency Ramp Sample No.Finesse Finesse Measurement F=FSR/ Meets requirement

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Injection Power 20mW Thermal Frequency Scan With 20 mHz 80 mV TEC voltage ramp Imager: Spiricon LBA camera Transverse Modes of the Cavity Strong TEM00 modes However, many high order modes… Setup

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Optics Summary Laser Laser characterization (profile, intensity, stability, noise) completed (Alex Jousse/Xiaochao) Unfortunately, the prometheus laser reaches only 25% of rated power The beam is multi-mode and highly elliptic:( Alex is working on beam circularization The laser is to be returned to Innolight (Germany) to bring it back to factory specs => Weeks down time. Alignment Cavity mirror alignment with red HeNe laser works High resolution motorized mirror alignment and beam steering implemented (David Jacobs) LabView control interface developed Cavity Prototype Cavity demonstrates strong TEM00 resonance Production cavity being assembled and vacuum tested (Greg Marble) PDH Lock Software Slow ramp frequency scan implemented (Sue Witherspoon) Frequency modulation tests in progress

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Prometheus Laser Power We have done a complete scan of Pump Diode current, Nd:YAG temp and PP-KTP temp The best power we could achieve is around mW.

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Prometheus Beam Profile (Jousse) Not 100% TEM 00, significant ellipticity

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Motorized Mirror Control (Jacobs) LabView Interface to Newfocus Picomotor Drives Note: this is the motion System in the final cavity

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, New Electron Detector Electron Detector (Bernard Michelle) New MOU with LPC Clermont-Ferrand signed LPC takes responsibility for a new high resolution electron detector Will contribute 1 physicist, 1 engineer, 2 designer/techs The new detector will be compatible with 12 GeV machine upgrade Specification 768 ch 240 m pitch silicon strips 4 Planes, 192 strips/plane, 1 cm spacing between planes 120 mm Vertical motion to allow full coverage of Compton Edge from GeV New custom front-end, FPGA trigger module (M. Brossard) New DAQ Software (Alex Camsonne)

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Electron Detector Status Detector Silicon micro-strip design finalized RFQ from Canberra systems for procurement in progress Mechanical Preliminary mechanical design completed Interference with photon detector being addressed Installation plan with AES in development

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Photon Detector Issues Present calorimeter is 5x5 array of PbWo crystals. Each crystal now is 2x2x23 cm. Not have enough Mollier width to catch the whole shower in one crystal => Complicated response function analysis. The crystals matrix is housed in a temp. controlled enclosure taking up precious real estate. Temp stabilization is not used. New electron detector chamber interferes with present photon calorimeter Moving the photon calorimeter upstream by 40 cm will work for 6GeV program, but a logistical nightmare For 12 GeV operation, the photon detector will move up by 10 cm. The present calorimeter will interfere with beam line in addition to electron detector. New Photon Calorimeter Single block with 3 or 4 Mollier radius wide and 22 rad length deep and a single PMT. Preserve counting capabilities. Time response has to be less than 120 ns 8x8x23 cm single block PbWo in a compact enclosure and side coupled PMT Study and conceptual design required Integrating DAQ for improved systematic errors Flash ADC in lieu of analog electronics under evaluation Bob Michaels and Rich Holmes are working on the FADC DAQ prototype

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Compton Detectors

Thomas Jefferson National Accelerator Facility S. Nanda, July 28, Summary The Hall A Green Compton Polarimeter Upgrade Project is on track to be operational in early Action Items: Simulation to determine optimal electron detector plane separation New compact photon detector conceptual design Grad student participation in 2007.