Title: JLab SRF tour
1JLab SRF tour
2Class 100 Clean Room
Left high pressure rinse
Right chemical etching A cavity string is inside
The stricter class 10 clean room is through
the left door.
3Cavity Tuning facility Danny Forehand
Bead pull iteratively measure axial electric
field profiles and deform cavities
Want uniformity among the cavities in the string
Typical uniformity begin 30-40, end 1
4Cavity tuning
Additional supports added to avoid bending of
original support
5Cavity tuning Danny Foreman (left) and Bob
Wagner
6Cavity tuning
Stiffening rings
7Cavity tuning
HOM
8Furnace Mike Lamm
Heat cavities to 600C for 10 hours to eliminate
hydrogen degassing which causes Q disease
Higher temperatures used by others make the
cavities too soft, which might be ok for smaller
cavities
A LabView program monitors the Residual Gas
Analyzer channels
9Furnace room
A titanium box which holds a cavity in
the furnace. This one shows the effects of
multiple heatings in its large grains
10Just outside the clean room door
RGA
Can attach vacuum pump to cavity inside clean
room. Pumping system contains residual gas
analyzer
11Close-up of the RGA on the pump outside the
cleanroom
12Inside the VTF assembly area
Two assemblies shown
13Inside the vertical test assembly area
Test of a single cavity
14Vertical test facility mezzanine area
Top covers of vertical test assemblies
15Vertical test mezzanine
Two top covers shown With instrumentation
Cavity string
Single cavity
16Vertical test mezzanine
Crane hook
Top cover of the cavity string assembly
17From the vertical test mezzanine looking down on
the vertical test facility
Vertical test dewars (3/6 shown) with movable
blue radiation shields
Shielding is 1 foot thick, composed of lead
bricks with 1 inch steel plate
18A vertical test dewar
RF switching network to switch among 6 test
dewars
Dewar cover
Fixed radiation shield with instrumentation
Movable radiation shield
19Vertical test dewar
Note shielding mates when closed no cracks
Movement control switches
Solenoidal winding around entire dewar under
yellow tape
Cables run through a labyrinth in the lead
shielding bricks in false floor
20Vertical test dewar
Radiation shield
Radiation shielding moves along rails, controlled
with buttons like high-bay roll door
21Vertical test facility
Another view of the shielding rails
22Vertical test dewar
Another view of the radiation shielding
Movement controls
23Vertical test facility
Magnetic switches indicate radiation shield
closed/open Interlocked personnel safety system
24Vertical test facility control room Joe Ozelis
25Vertical test facility
Some cryo stuff separated by dewar
Two additional un-(rad-)shielded small dewars at
the edge of The vertical test facility for, e.g.,
thermal measurements (no RF)
26Horizontal assembly area between horizontal test
facility (shielded cave) and clean room
Clean stuff is valved off, then mated along rails
here
27At the door to the horizontal test cave
This piece of concrete slides up on jacks for rad
shielding
28View into horizontal test facility
Shielding door
29Horizontal test cave Tom Powers, Joe Ozelis,
Mike Lamm
degaussing cables
This room has been de-gaussed note cables along
wall and surrounded by silicon-steel magnetic
shielding wallpaper on 5 sides
30Another view of the horizontal test facility
31Horizontal test cave ceiling showing passthroughs
for waveguides
32Horizontal assembly area
Some pieces of AD-MU-80 magnetic shielding for
horizontal cryostat Shielding is stiff but
wobbly. Thickness ltlt 1mm
Some instrumentation passthrough holes were cut
in-house Use rivets to connect sheets use
larger holes to account for temp shrinkage Tape
up tight with mylar tape
33Electropolishing facility
Takes longer than BCP, due to numerous safety
issues and slower layer removal, but best way to
get to highest cavity gradients
34A two-cavity string with tuners Joe Ozelis,
Mike Lamm