Search Results - "Valente, R. U"
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Design of a 4 T Curved Demonstrator Magnet for a Superconducting Ion Gantry
Published in IEEE transactions on applied superconductivity (01-08-2023)“…The Superconducting Ion Gantry (SIG) project is the contribution from INFN (the Italian National Institute for Nuclear Physics) to the international SIGRUM…”
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Straight and curved Canted Cosine Theta superconducting dipoles for ion therapy: comparison between various design options and technologies for ramping operation
Published in IEEE transactions on applied superconductivity (01-08-2023)“…Canted Cosine Theta layout for accelerator magnets is a very attractive since such magnets can be manufactured and assembled without big tooling, and with a…”
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Preliminary Study of 4 T Superconducting Dipole for a Light Rotating Gantry for Ion-Therapy
Published in IEEE transactions on applied superconductivity (01-09-2022)“…A collaboration between CERN, CNAO, INFN, and MedAustron has been formed aiming at designing a light rotating gantry suitable for hadron therapy based on 430…”
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2D EM Design and Innovative Winding Technique for a 4 T High Curvature Superconducting Dipole in Block Coil Configuration for Next Generation Ion Gantries
Published in IEEE transactions on applied superconductivity (01-08-2024)“…As part of major European collaborations focused on the study of newly developed superconducting magnets for ion therapy, Istituto Nazionale di Fisica Nucleare…”
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Conceptual Design of an HTS Canted Cosine Theta Dipole Magnet for Research and Hadron Therapy Accelerators
Published in IEEE transactions on applied superconductivity (01-08-2024)“…The European project IFAST's WP8 Innovative Superconducting Magnets aims to develop the technology of Canted Cosine Theta (CCT) magnets wound with…”
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Status of Nb-Ti CCT Magnet EU Programs for Hadron Therapy
Published in IEEE transactions on applied superconductivity (01-08-2024)“…The use of Canted Cosine Theta (CCT) magnets for accelerator applications has gained popularity due to their ease of manufacturing and assembly. In the context…”
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Electrical Quality Assurance for the NbTi Coils of the HL-LHC High Order Corrector Magnets
Published in IEEE transactions on applied superconductivity (01-09-2022)“…The INFN-LASA laboratory (Milano, Italy) is involved in the High-Luminosity LHC program for the design, construction, and test of 54 superconducting high-order…”
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First Winding Trial for the Superconducting Ion Gantry (SIG) Dipole Demonstrator Magnet
Published in IEEE transactions on applied superconductivity (01-08-2024)“…The Superconducting Ion Gantry (SIG) project aims to design, construct, and test a curved superconducting dipole demonstrator magnet for an ion gantry (up to a…”
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Status on the Development of the NbSn 12 T Falcon Dipole for the FCC-hh[Formula Omitted]
Published in IEEE transactions on applied superconductivity (01-05-2024)“…The quest for advancing science and technology continues with the Future Circular Collider (FCC), which requires 16 T bending dipoles to be installed along its…”
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Magnetic Measurements Results and Analysis of the First Batches of Superferric Magnets for the HL-LHC High Order Field Correction
Published in IEEE transactions on applied superconductivity (01-09-2022)“…In agreement with CERN the LASA laboratory of INFN (National Institute for Nuclear Physics) of Milan has carried out the industrial development of a novel type…”
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11
Optimization of Electromagnetic Design After Winding Tests for the Nb3Sn Cos-Theta Dipole Model for FCC-hh
Published in IEEE transactions on applied superconductivity (01-08-2023)“…The Future Circular Collider in hadron-hadron configuration (FCC-hh) is one of the main options for the post-LHC era of particle accelerator. The project led…”
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12
Experience on Series Production of the HL-LHC Superferric High Order Corrector Magnets
Published in IEEE transactions on applied superconductivity (01-08-2023)“…INFN has developed at the LASA lab (Milano, Italy) the High Order (HO) corrector magnets for the High Luminosity-LHC (HL-LHC) project, which will equip the new…”
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13
Completion of the Test Phase for the Hilumi LHC Skew Quadrupole Corrector Magnet
Published in IEEE transactions on applied superconductivity (01-08-2021)“…In the family of the High-Luminosity LHC high order correctors, the skew quadrupole was the most critical magnet as three assemblies with different solutions…”
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14
Mechanical Design of FalconD, a Nb$_3$Sn Cos$\theta$ Short Model Dipole for the FCC
Published in IEEE transactions on applied superconductivity (01-09-2022)Get full text
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15
Preliminary Design of the Nb 3 Sn $\cos\theta$ Short Model for the FCC
Published in IEEE transactions on applied superconductivity (01-08-2021)Get full text
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Performances of the First Full-Length Module Prototype of the MgB$_\text{2}$ Round Coil Superferric Magnet at LASA
Published in IEEE transactions on applied superconductivity (01-08-2023)Get full text
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Performances of the First Full-Length Module Prototype of the MgB2 Round Coil Superferric Magnet at LASA
Published in IEEE transactions on applied superconductivity (18-03-2023)“…Developed within the INFN LASA and CERN collaboration agreement for the construction of the High Order Corrector Magnets for the High Luminosity-LHC project,…”
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Performances of the First Full-Length Module Prototype of the MgB[Formula Omitted] Round Coil Superferric Magnet at LASA
Published in IEEE transactions on applied superconductivity (01-01-2023)“…Developed within the INFN LASA and CERN collaboration agreement for the construction of the High Order Corrector Magnets for the High Luminosity-LHC project,…”
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19
Status on the Development of the Nb Sn 12 T Falcon Dipole for the FCC-hh
Published in IEEE transactions on applied superconductivity (01-05-2024)“…The quest for advancing science and technology continues with the Future Circular Collider (FCC), which requires 16 T bending dipoles to be installed along its…”
Get full text
Journal Article -
20
Mechanical Design of FalconD, a Nb 3Sn Cos \theta Short Model Dipole for the FCC
Published in IEEE transactions on applied superconductivity (01-09-2022)“…The future of the particle accelerators points to a new CERN's circular collider with an order of magnitude increase in the center-of-mass energy compared to…”
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