The magnetizations of eight high-gradient quadrupole cables designated HQ and QXF and a pair of strands, identical in architecture but with different effective strand diameters extracted from an HQ and a related QXF cable, were measured. In the service of field quality assessment, the cable magnetizations and losses were measured by pickup coil magnetometry at 4.2 K in face-on fields, B m , of ± 400 mT at frequencies, f, of up to 60 mHz. Based on the coupling component of loss, Q coup , the coupling magnetization M coup = Q coup /4B m was derived for a ramp rate of 7.5 mT/s. Persistent current (shielding) magnetization and loss (M sh and Q h,strand ) were measured on short pieces of extracted strand by vibrating sample magnetometry at 4.2 K...
For the LHC upgrade, CERN has launched a large program to develop next generation accelerator magnet...
In the framework of the development of high field magnets made of $Nb_3Sn$ superconductor for projec...
The high field superconducting magnets required for ongoing and planned upgrades to the Large Hadron...
The magnetizations of eight high-gradient quadrupole cables designated HQ and QXF and a pair of stra...
For many accelerator magnets field quality at the bore is a critical requirement for which reason it...
It is well known by now that interstrand coupling in NbTi Rutherford cables can be suppressed by sep...
One of the goals of the Large Hadron Collider Accelerator Research Program (LARP) is to demonstrate ...
Multistrand cables may exhibit two classes of parasitic magnetization both of which can distort the ...
In accelerator magnets, and especially at low excitation values, the field errors are mainly determi...
The degradation of the critical current of impregnated Rutherford type Nb{sub 3}Sn cables is investi...
A superconducting Rutherford-type cable is composed of many strands wound together. The electrical r...
The degradation of the critical current of impregnated Rutherford type Nb3Sn cables was investigated...
Rutherford cables with cores of E-glass and S-glass woven tape and types AISI-316 and AISI-304 stain...
Recent developments in high energy physics have led to a demand for high magnetic fields which canno...
High critical current density Nb$_{3}$Sn wires (Jc > 2500 A/mm2 at 4.2 K and 12 T) are the conduc...
For the LHC upgrade, CERN has launched a large program to develop next generation accelerator magnet...
In the framework of the development of high field magnets made of $Nb_3Sn$ superconductor for projec...
The high field superconducting magnets required for ongoing and planned upgrades to the Large Hadron...
The magnetizations of eight high-gradient quadrupole cables designated HQ and QXF and a pair of stra...
For many accelerator magnets field quality at the bore is a critical requirement for which reason it...
It is well known by now that interstrand coupling in NbTi Rutherford cables can be suppressed by sep...
One of the goals of the Large Hadron Collider Accelerator Research Program (LARP) is to demonstrate ...
Multistrand cables may exhibit two classes of parasitic magnetization both of which can distort the ...
In accelerator magnets, and especially at low excitation values, the field errors are mainly determi...
The degradation of the critical current of impregnated Rutherford type Nb{sub 3}Sn cables is investi...
A superconducting Rutherford-type cable is composed of many strands wound together. The electrical r...
The degradation of the critical current of impregnated Rutherford type Nb3Sn cables was investigated...
Rutherford cables with cores of E-glass and S-glass woven tape and types AISI-316 and AISI-304 stain...
Recent developments in high energy physics have led to a demand for high magnetic fields which canno...
High critical current density Nb$_{3}$Sn wires (Jc > 2500 A/mm2 at 4.2 K and 12 T) are the conduc...
For the LHC upgrade, CERN has launched a large program to develop next generation accelerator magnet...
In the framework of the development of high field magnets made of $Nb_3Sn$ superconductor for projec...
The high field superconducting magnets required for ongoing and planned upgrades to the Large Hadron...