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CERN Document Server 6 notices trouvées  La recherche a duré 0.59 secondes. 
1.
Metallographic analysis of 11 T dipole coils for High Luminosity-Large Hadron Collider (HL-LHC) / Balachandran, Shreyas (Florida State U.) ; Cooper, Jonathan (Florida State U.) ; Van Oss, Orion B (Columbia U.) ; Lee, Peter J (Florida State U.) ; Bottura, Luca (CERN) ; Devred, Arnaud (CERN) ; Savary, Frederic (CERN) ; Scheuerlein, Christian (CERN) ; Wolf, Felix (CERN)
For next-generation accelerator magnets for fields beyond those achievable using Nb–Ti, Nb3Sn is the most viable superconductor. The high luminosity upgrade for the Large Hadron Collider (HL-LHC) marks an important milestone as it will be the first project where Nb3Sn magnets will be installed in an accelerator. [...]
2021 - 9 p. - Published in : Supercond. Sci. Technol. 34 (2021) 025001 Fulltext from publisher: PDF;
2.
Evidence of Kramer extrapolation inaccuracy for predicting high field Nb$_3$Sn properties / Segal, Christopher (Florida State U. ; CERN) ; Barth, Christian (CERN) ; Falorio, Iole (CERN) ; Carlón Zurita, Alejandro (CERN) ; Ballarino, Amalia (CERN) ; Chaud, Xavier (LNCMI, Grenoble) ; Tarantini, Chiara (Florida State U.) ; Lee, Peter J (Florida State U.) ; Larbalestier, David C (Florida State U.)
Future applications requiring high magnetic fields, such as the proposed Future Circular Collider, demand a substantially higher critical current density, $J_c$, at fields ≥16 T than is presently available in any commercial strand, so there is a strong effort to develop new routes to higher $J_c$ Nb$_3$Sn. As a consequence, evaluating the irreversibility field ($H_{irr}$) of any new conductor to ensure reliable performance at these higher magnetic fields becomes essential. [...]
IOP, 2020 - 9 p. - Published in : J. Phys.: Conf. Ser. 1559 (2020) 012062 Published fulltext: PDF;
In : 14th European Conference on Applied Superconductivity, Glasgow, United Kingdom, 1 - 5 Sep 2019, pp.012062
3.
Evaluation of critical current density and residual resistance ratio limits in powder in tube Nb$_{3}$Sn conductors / Segal, Christopher (Natl. High Mag. Field Lab.) ; Tarantini, Chiara (Natl. High Mag. Field Lab.) ; Sung, Zu Hawn (Natl. High Mag. Field Lab.) ; Lee, Peter J (Natl. High Mag. Field Lab.) ; Sailer, Bernd (Heraeus, Hanau) ; Thoener, Manfred (Heraeus, Hanau) ; Schlenga, Klaud (Heraeus, Hanau) ; Ballarino, Amalia (CERN) ; Bottura, Luca (CERN) ; Bordini, Bernardo (CERN) et al.
High critical current density ( Jc) Nb$_{3}$Sn A15 multifilamentary wires require a large volume fraction of small grain (SG), superconducting A15 phase, as well as Cu stabilizer with high Residual Resistance Ratio (RRR) to provide electromagnetic stabilization and protection. In powder-in-tube (PIT) wires the unreacted Nb7.5 wt%Ta outer layer of the tubular filaments acts as a diffusion barrier and protects the interfilamentary Cu stabilizer from Sn contamination. [...]
CERN-ACC-2016-0340.- 2016 - 10. - Published in : Supercond. Sci. Technol. 29 (2016) 085003 Fulltext: PDF;
4.
Conference on Cryogenic Engineering and Cryogenic Materials - CEC ICMC Cryogenic Engineering Cryogenic Materials   16 - 20 Jul 2007  - Chattanooga, TN, USA  / Balachandran, U (ed.); Amm, Kathleen (ed.); Evans, David (ed.); Gregory, Eric (ed.); Lee, Peter (ed.); Osofsky, Mike (ed.); Pamidi, Sastry (ed.); Park, Chan (ed.); Wu, Judy (ed.); Sumption, Mike (ed.)
New York, NY : AIP, 2008 - 584 p.
5.
Advances in Superconducting Strand for Accelerator Magnet Application / Lee, Peter ; Larbalestier, David C
2003 - 5 p. External link: Published version from JACoW
In : 20th IEEE Particle Accelerator Conference, Portland, OR, USA, 12 - 16 May 2003, pp.151
6.
Status of Muon Collider Research and Development and Future Plans / Ankenbrandt, Charles M. (Fermilab) ; Atac, Muzaffer (Fermilab) ; Autin, Bruno (CERN) ; Balbekov, Valeri I. (Fermilab) ; Barger, Vernon D. (Wisconsin U., Madison) ; Benary, Odette (Tel Aviv U.) ; Berg, J.Scott (Indiana U.) ; Berger, Michael S. (Indiana U.) ; Black, Edgar L. (IIT, Chicago) ; Blondel, Alain (Ecole Polytechnique) et al.
The status of the research on muon colliders is discussed and plans are outlined for future theoretical and experimental studies. Besides continued work on the parameters of a 3-4 and 0.5 TeV center-of-mass (CoM) energy collider, many studies are now concentrating on a machine near 0.1 TeV (CoM) that could be a factory for the s-channel production of Higgs particles. [...]
physics/9901022; BNL-65623; FERMILAB-PUB-98-179; LBNL-41935; LBL-41935; BNL-65623; FERMILAB-PUB-98-179; LBNL-41935.- Upton, NY : Brookhaven Nat. Lab., 1999 - 95 p. - Published in : Phys. Rev. Spec. Top. Accel. Beams 2 (1999) 081001 APS Published version, local copy: PDF; Access to fulltext document: 9901022.figjuan4 - PS.GZ; 9901022.figjuan1 - PS.GZ; 9901022.figjuan3 - PS.GZ; 9901022 - PDF; 9901022.figjuan2 - PS.GZ; Fulltext: PDF; External link: Fermilab Library Server (fulltext available)

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