Isbn: 9783030024079 - fast transverse beam instability caused by electron cloud trapped in combined function magnets (springer theses) (6 Ergebnisse)

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    • Sprache: Englisch

      Verlag: Cham, Springer International Publishing/Springer., 2018

      3030024075 / 9783030024079

      Serie: Buch 530 von 797 - Springer Theses

      • Hardcover
      • Erstausgabe

      Anbieter: Universitätsbuchhandlung Herta Hold GmbH, Berlin, DeutschlandUniversitätsbuchhandlung Herta Hold GmbH

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      1st edition 2018. 23.5 cm x 15.5 cm, 325 g. XI, 88 p. Hardcover. Einband bestoßen, daher Mängelexemplar gestempelt, sonst sehr guter Zustand. Imperfect copy due to slightly bumped cover, apart from this in very good condition. Stamped. Springer Theses. Sprache: Englisch.

    • Sprache: Englisch

      Verlag: Palgrave Macmillan, 2018

      3030024075 / 9783030024079

      Serie: Buch 530 von 797 - Springer Theses

      • Hardcover

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      Zustand: Hervorragend. Zustand: Hervorragend | Sprache: Englisch | Produktart: Bücher | This thesis presents profound insights into the origins and dynamics of beam instabilities using both experimental observations and numerical simulations. When the Recycler Ring, a high-intensity proton beam accelerator at Fermi National Accelerator Laboratory, was commissioned, it became evident that the Recycler beam experiences a very fast instability of unknown nature. This instability was so fast that the existing dampers were ineffective at suppressing it. The nature of this phenomenon, alongside several other poorly understood features of the beam, became one of the biggest puzzles in the accelerator community. The author investigated a hypothesis that the instability arises from an interaction with a dense cloud of electrons accompanying the proton beam. He studied the phenomena experimentally by comparing the dynamics of stable and unstable beams, by numerically simulating the build-up of the electron cloud and its interaction with the beam, and by constructing an analytical model of an electron cloud-driven instability with the electrons trapped in combined-function dipole magnets. He has devised a method to stabilize the beam by a clearing bunch, which conclusively revealed that the instability is caused by the electron cloud, trapped in a strong magnetic field. Finally, he conducted measurements of the microwave propagation through a single dipole magnet. These measurements have confirmed the presence of the electron cloud in combined-function magnets.

    • Sprache: Englisch

      Verlag: Springer, 2018

      3030024075 / 9783030024079

      Serie: Buch 530 von 797 - Springer Theses

      • Hardcover

      Anbieter: Ria Christie Collections, Uxbridge, Vereinigtes KönigreichRia Christie Collections

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    • Sprache: Englisch

      Verlag: Springer Verlag, 2018

      3030024075 / 9783030024079

      Serie: Buch 530 von 797 - Springer Theses

      • Hardcover

      Anbieter: Revaluation Books, Exeter, Vereinigtes KönigreichRevaluation Books

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      Hardcover. Zustand: Brand New. 102 pages. 9.25x6.10x0.39 inches. In Stock.

    • Sprache: Englisch

      Verlag: Springer, 2018

      3030024075 / 9783030024079

      Serie: Buch 530 von 797 - Springer Theses

      • Hardcover

      Anbieter: Kennys Bookstore, Olney, MD, USAKennys Bookstore

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    • Sprache: Englisch

      Verlag: Springer, 2018

      3030024075 / 9783030024079

      Serie: Buch 530 von 797 - Springer Theses

      • Hardcover

      Anbieter: AHA-BUCH GmbH, Einbeck, DeutschlandAHA-BUCH GmbH

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      Buch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This thesis presents profound insights into the origins and dynamics of beam instabilities using both experimental observations and numerical simulations. When the Recycler Ring, a high-intensity proton beam accelerator at Fermi National Accelerator Laboratory, was commissioned, it became evident that the Recycler beam experiences a very fast instability of unknown nature. This instability was so fast that the existing dampers were ineffective at suppressing it. The nature of this phenomenon, alongside several other poorly understood features of the beam, became one of the biggest puzzles in the accelerator community. The author investigated a hypothesis that the instability arises from an interaction with a dense cloud of electrons accompanying the proton beam. He studied the phenomena experimentally by comparing the dynamics of stable and unstable beams, by numerically simulating the build-up of the electron cloud and its interaction with the beam, and by constructing an analytical model of an electron cloud-driven instability with the electrons trapped in combined-function dipole magnets. He has devised a method to stabilize the beam by a clearing bunch, which conclusively revealed that the instability is caused by the electron cloud, trapped in a strong magnetic field. Finally, he conducted measurements of the microwave propagation through a single dipole magnet. These measurements have confirmed the presence of the electron cloud in combined-function magnets.