Published August 23, 2002 | Version v1
Report

Adjustable Permanent Quadrupoles Using Rotating Magnet Material Rods for the Next Linear Collider

Description

The proposed Next Linear Collider (NLC) will require over 1400 adjustable quadrupoles between the main linacs' accelerator structures. These 12.7 mm bore quadrupoles will have a range of integrated strength from 0.6 to 132 Tesla, with a maximum gradient of 135 Tesla per meter, an adjustment range of +0 -20% and effective lengths from 324 mm to 972 mm. The magnetic center must remain stable to within 1 micrometer during the 20% adjustment. In an effort to reduce estimated costs and increase reliability, several designs using hybrid permanent magnets have been developed. All magnets have iron poles and use either Samarium Cobalt or Neodymium Iron to provide the magnetic fields. Two prototypes use rotating rods containing permanent magnetic material to vary the gradient. Gradient changes of 20% and center shifts of less than 20 microns have been measured. These data are compared to an equivalent electromagnet prototype. See High Reliability Prototype Quadrupole for the Next Linear Collider by C.E Rago, C.M SPENCER, Z. Wolf submitted to this conference

Availability note (English)

Available from PURL: https://www.osti.gov/servlets/purl/799917-uBwqGa/native/

Additional details

Publishing Information

Imprint Pagination
[vp.]
Report number
SLAC-PUB--8991

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
34004340
Subject category
S43: PARTICLE ACCELERATORS;
Resource subtype / Literary indicator
Non-conventional Literature
Descriptors DEI
ACCELERATORS; COBALT; ELECTROMAGNETS; IRON; LINEAR ACCELERATORS; LINEAR COLLIDERS; MAGNETIC FIELDS; MAGNETIC MATERIALS; MAGNETS; NEODYMIUM; PERMANENT MAGNETS; QUADRUPOLES; RELIABILITY; SAMARIUM
Descriptors DEC
ACCELERATORS; ELECTRICAL EQUIPMENT; ELEMENTS; EQUIPMENT; LINEAR ACCELERATORS; MAGNETS; MATERIALS; METALS; MULTIPOLES; RARE EARTHS; TRANSITION ELEMENTS

Optional Information

Contract/Grant/Project number
AC03-76SF00515
Funding organization
USDOE Office of Energy Research (ER) (United States)