Zikri Yusof, Klaus Attenkofer, Seon Woo Lee, Junqi Xie, Sasha Paramonov Bialkali/Multialkali Photocathode at ANL.

Slides:



Advertisements
Similar presentations
Bialkali Photocathode Development
Advertisements

Development of Bialkali Transfer Photocathodes for Large Area Micro- Channel Plate Based Photo Detectors 1 Argonne National Laboratory, Argonne, IL 2 University.
Large Area, Low Cost PMTs Neutrinos and Arms Control Workshop Paul Hink 6 February 2004 BURLE INDUSTRIES.
February 17-18, 2010 R&D ERL David Pate R&D ERL Photocathode Deposition and Transport System David Pate February 17-18, 2010 Photocathode Deposition and.
Inert Atmosphere Systems in OLED Research and Fabrication Copyright, 1996 © Dale Carnegie & Associates, Inc.
1 LAPD Team Meeting 10/14/09 O.H.W. Siegmund, Experimental Astrophysics Group, Space Sciences Laboratory, U. California at Berkeley Bialkali Photocathode.
Advanced Characterization of Emissive Materials: Photocathodes and MCPs Igor Veryovkin, Slade Jokela and Alexander Zinovev.
Specs and Design Options for a 8”-flat-panel MCP-PMT Fabrication Facility Dean Walters Argonne National Laboratory.
DOE REVIEW 1/20/04 – Dean White 1 Gantry Module Assembly TOB & TEC Dean White University of California, Santa Barbara.
Photon-Absorption Enhancement Factor Work supported by National Nuclear Security Administration (NNSA), Office of Nonproliferation Research and Engineering,
Dean R Walters Undulator Vacuum October 12-13, 2004 Facility Advisory Committee Undulator Vacuum System/Mechanical By Dean R Walters.
LIGO-G M LIGO Laboratory1 Adv. LIGO Facilities Modifications (FAC) Plans, Schedule, Costs, Team Plan, Schedule Costs Team.
MICE Collaboration Meeting March 29 - April 1, CERN MICE alignment, tolerances and supports Tuesday March 30 Room Edgar Black/IIT March17-
ANL HWR Cryomodule Status Update 27 January 2015 Zachary Conway On behalf of the ANL Linac Development Group Argonne National Laboratory Physics Division.
A U.S. Department of Energy Office of Science Laboratory Operated by The University of Chicago Argonne National Laboratory Office of Science U.S. Department.
Status of III-V and Nano-Scale Photo- Cathodes at ANL The ANL: Thomas Prolier Matthew Wetstein Igor Veryovkin Zikri Yusof Alexander Zinovev.
1 Light Collection  Once light is produced in a scintillator it must collected, transported, and coupled to some device that can convert it into an electrical.
Linac Marx Modulator Update Trevor Butler 10/29/2014.
Steps Towards 8”x8” Photocathode For The Large Area Picosecond Photodetector Project At Argonne Zikri Yusof (ANL) Collaborators: Klaus Attenkofer (ANL),
C osmic R Ay T elescope for the E ffects of R adiation CRaTER Pre-Ship Review (I-PSR) R. Foster January 3-4, 2008.
Intermediate review - ERC – February 9, 2009 – L. Pinard 1 Mirrors Sub-System Overview  Introduction  Scope of the subsystem, main tasks  Job done since.
Tray Factory Considerations Jean-Francois Genat UC LAPD Collaboration Meeting, June th 2010, Argonne. 1.
ASPERA-3 Apr. 25, 00 Monthly Status Report ASPERA Monthly Status ReportMonthly 4_25/ Page 1 Monthly Status Report Report due 4/25/00 Schedule statused.
ANL Photocathodes Growth and Characterization Facility Kathleen Broughton Charles Kurtz Ernesto Indacochea Alexander Paramonov Klaus Attenkofer Photocathodes.
AlGaN/InGaN Photocathodes D.J. Leopold and J.H. Buckley Washington University St. Louis, Missouri, U.S.A. Large Area Picosecond Photodetector Development.
RFQ Fabrication Plan, Schedule and QC PXIE RFQ Fabrication Readiness Review LBNL – June 26, 2013 Steve Virostek - Engineering Division Lawrence Berkeley.
VDU/LEI project in FUSION: background, goals, methods and expected results (PhD student Birutė Bobrovaitė, D r. Liudas Pranevičius)
1 C osmic dust R eflectron for I sotopic A nalysis CRIA LAMA (A cria is a baby llama)
TIPP Paper GP Committees Seon Woo Lee – “Theory and Applications of Transmission Mode Metal (AL) Photocathode” GP Committee: Marcel Demarteau, Henry Frisch,
Photo-detector Tube Construction Laboratory Considerations Dean Walters Argonne National Laboratory.
Introduction to Industrial Design
1 LAPPD Team meeting 6/10/2010 Ossy Siegmund, Experimental Astrophysics Group, Space Sciences Laboratory, U. California at Berkeley Bialkali Photocathode.
LAPPD Collaboration Review 12/9/2011 Ossy Siegmund, Sharon Jelinsky, Jason McPhate, Joe Tedesco Experimental Astrophysics Group, Space Sciences Laboratory,
US Test Blanket Module Partially Integrated Testing Sandia is a multiprogram laboratory operated by Sandia Corporation, a Lockheed Martin Company, for.
Collaboration Meeting Argonne National Laboratory June 10-11, 2010 Mechanical Design of Glass Tiles and Trays Rich Northrop University of Chicago Second.
The PC-group (Klaus Attenkofer)
VVS Prototype Construction at Fermilab Erik Ramberg 26 February,2002 Design issues for VVS Details of VVS prototype design Schedule and Budget Testing.
8 April 2005Aussois, France BURLE INDUSTRIES Recent Photomultiplier and Device Developments NNN05 Robert Caracciolo 8 April 2005 BURLE INDUSTRIES.
Passivation of HPGe Detectors at LNL-INFN Speaker: Gianluigi Maggioni Materials & Detectors Laboratory (LNL-INFN) Scientific Manager: Prof. Gianantonio.
ALD Thin Film Materials LDRD review 2009NuFact09.
1 Status of Vacuum Process Facilities at SSL 16 October 2009 Sharon R Jelinsky Space Sciences Laboratory, UC Berkeley.
M.S. Hossain, N.A. Khan, M. Akhtaruzzaman, A. R. M. Alamoud and N. Amin Solar Energy Research Institute (SERI) Universiti Kebangsaan Malaysia (UKM) Selangor,
Instrumentation for Theory-Inspired Photocathode Development within the Large Area Picosecond Photo Detector (LAPPD) Project 1 Argonne National Laboratory,
Off-Axis Collaboration Meeting Feb 7, 2004 Richard Talaga, Argonne (Liquid) Scintillator Structure Workshop Report Workshop Purpose –To review the current.
Cs 2 Te Photocathodes for CTF3 Photoinjectors R. LOSITO - CERN 4/10/2006.
Atomic Layer Deposition for Microchannel Plate Fabrication at Argonne
LIGO-G M Overview of LIGO R&D and Planning for Advanced LIGO Detectors Gary Sanders NSF R&D Review Caltech, January 29, 2001.
Engineering Operations Outage Status: Tile cleaning is complete Tentatively planning on 2 LITER operation. Design Review upcoming Shielding of HHFW/in-vessel.
LIGO-G M Overview of the LIGO Continuing Operations (FY FY2006) Proposal Gary Sanders LIGO PAC9 Meeting December 2000.
Concept Design for LBNF Far detector (LAr single phase)
Multialkali photocathode Luca Cultrera. Outline Motivations; State of the art; Alkali antimonides photocathodes; Growth UHV chamber; Load lock for photocathode.
ALD Technology Transfer – Progress Update LAPPD2 Godparent Review Aileen O’Mahony 5 th April 2013.
MCP Photodetector program Lei Xia ANL - HEP.
Victor Guarino P.E. Mechanical Support Group High Energy Physics - ANL SC Design Effort Victor Guarino P.E.
Prototype Cryomodule FDR Ken Premo 21 – 22 January 2015 High Power Coupler Design.
1 Status of RPC Construction & Cassette Assembly Qingmin Zhang Argonne National Laboratory
Baseline Design for Braidwood
Cesium Telluride Photocathode Preparation at Argonne
ALICE PD group meeting Andrea Francescon.
Overview of the Frascati Production Facilities
MICE Coupling Coil Update
Frontiers in Photocathode R&D
Computer Numerical Control
Progress on the development of a low-cost fast-timing microchannel plate photodetector Junqi Xie1, Karen Byrum1, Marcel Demarteau1, Joseph Gregar1, Edward.
UCB Bialkali Cathode Process Program
Surface morphology of p-GaAs
Bialkali Cathode Process Program
Coppin State University
Upgrade of the GlueX Spectrometer for Physics with Strange Final States Nuclear Physics Yi Qiang Nov. 13, 2011.
Undulator System Components Status Dean Walters
Presentation transcript:

Zikri Yusof, Klaus Attenkofer, Seon Woo Lee, Junqi Xie, Sasha Paramonov Bialkali/Multialkali Photocathode at ANL

General Overview of ANL Bialkali/Multialkali Photocathode Effort 2 Comprises of two broad efforts that run in parallel, but related to each other 8”x8” photocathode in tile assembly Physics of photocathodes

General Overview of ANL Bialkali/Multialkali Photocathode Effort 3 Comprises of two broad efforts that run in parallel, but related to each other 8”x8” photocathode in tile assembly Physics of photocathodes 8”x8” prototype 4-inch test photocathode Fabrication and characterization network Design of fabrication, characterization, and vacuum transfer system

Timeline * 8”x8” photocathode in tile assembly 8”x8” prototype 4-inch test photocathode 3 months 10 months Present 14 months *Progress will certainly depend on Argonne’s Facility division in finishing modification to the laboratory space

The 4” Test Photocathode Cleaning process for glass substrate is rudimentary; O 2 discharge in situ without taking surface out of vacuum; O 2 discharge on thin Sb surface can extend absorption spectrum into longer wavelength. Major lessons learned from studying bialkali photocathode fabrication for PMT at Burle Industries: We believe that we can extract the essence from these and adopt it to our fabrication process. The question is, how to incorporate these, and are they reasonable to do for “mass production”? The testing ground for this is the 4”x4” test photocathode.

The 4” Test Photocathode A complete fabrication system from Burle Industries that was used in bialkali photocathode fabrication for PMTs will be arriving soon. Oven and gas/vacuum control system Inside oven: vacuum manifold for PMTs

The 4” Test Photocathode Initial plan is to make use of the Burle system to fabricate photocathode inside a 4” glass cube. The glass cube will be mounted onto the vacuum manifold via a glass stem. Initial sketch by Richard Northrop of glass container. This will allow us to test a number of items: Sb beads production and arrangements, alkali metal dispensers locations, etc.

8” x 8” Prototype – Initial Idea (exact dimensions still being worked on – could also be done in multiple chambers) 8”x8” glass plate undergoes bakeout in another chamber. It is then transported under vacuum to the deposition chamber and placed over the glass enclosure. O 2 discharge and photocathode deposition then begin. After deposition, photocathode glass plate is transported into the tile assembly chamber under vacuum.

Timeline For Bialkali/Multialkali Fabrication/Characterization System Physics of photocathodes Fabrication and characterization network Design of fabrication, characterization, and vacuum transfer system 3 months* 12 months Present 14 months *Substantial amount of design of the system has been completed (ref: last GP Review). The vacuum transfer system is currently being designed and will be tested on an operational Cs 2 Te photocathode fabrication chamber. Desired characterizations: XRD, optical spectroscopy, AFM, XAFS, XPS, UPS, SIMS (see Igor’s and Klaus’s presentations).

Resources Personnel: 2 staff (Klaus-50%, Zikri-50%), 2 full-time postdocs (Junqi-100%, Seon- >50%), 1 mechanical engineer (Alan); Possible need of Rich Northrop and Joe Gregar for glass assembly design and construction; We expect a greater need for engineering support in the next year not only during the construction phase, but also the design phase; We should have a cost estimate for the 8”x8” fabrication facility within 3 months after a more detailed design work is completed.