Possibility of MGB2 Application to Superconducting Cavities

Possibility of MGB2 Application to Superconducting Cavities
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Total Pages: 3
Release: 2002
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A metallic superconductor, magnesium diboride (MgB2), which has a transition temperature of (almost equal to)39 K, was discovered in early 2001. Published data taken at 10 GHz demonstrate that the material has a surface resistance comparable to niobium. This paper discusses the possibility of MgB2 as compared to Nb and Nb3Sn. Also, a possible method of fabricating a MgB2 cavity using the hot isostatic press (HIP) technique is proposed.


Possibility of MGB2 Application to Superconducting Cavities
Language: en
Pages: 3
Authors:
Categories:
Type: BOOK - Published: 2002 - Publisher:

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A metallic superconductor, magnesium diboride (MgB2), which has a transition temperature of (almost equal to)39 K, was discovered in early 2001. Published data
Application of Superconducting Magnesium Diboride (MgB2) in Superconducting Radio Frequency Cavities
Language: en
Pages: 159
Authors: Teng Tan
Categories:
Type: BOOK - Published: 2015 - Publisher:

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The superconductivity in magnesium diboride (MgB2) was discovered in 2001. As a BCS superconductor, MgB2 has a record-high Tc of 39 K, high Jc of > 107 A/cm2 an
R & D on MgB2 and Nb Films at LANL for Applications to Superconducting RF Cavities
Language: en
Pages:
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Type: BOOK - Published: 2012 - Publisher:

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Power Dependence of the RF Surface Resistance of MgB2 Superconductor
Language: en
Pages: 4
Authors:
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Type: BOOK - Published: 2005 - Publisher:

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Magnesium diboride (MgB2) is a superconducting material that has a transition temperature (T{sub c}) of (almost equal to)40 K, which is (almost equal to)30 K hi
Mgb2 Superconducting Wires: Basics And Applications
Language: en
Pages: 667
Authors: Rene Flukiger
Categories: Technology & Engineering
Type: BOOK - Published: 2016-08-10 - Publisher: World Scientific

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The compendium gives a complete overview of the properties of MgB2 (Magnesium Diboride), a superconducting compound with a transition temperature of Tc = 39K, f