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Rainbows in Channeling of Charged Particles in Crystals and Nanotubes (Lecture Notes in Nanoscale Science and Technology)
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Bester Preis: Fr. 6.23 (€ 6.37)¹ (vom 10.03.2019)Rainbows in Channeling of Charged Particles in Crystals and Nanotubes (2017)
ISBN: 9783319615233 bzw. 3319615238, vermutlich in Englisch, Springer, Berlin Springer International Publishing, gebundenes Buch, neu.
Von Händler/Antiquariat, buecher.de GmbH & Co. KG, [1].
This book discusses the effects, modeling, latest results, and nanotechnology applications of rainbows that appear during channeling of charged particles in crystals and nanotubes. The authors begin with a brief review of the optical and particle rainbow effects followed by a detailed description of crystal rainbows, which appear in ion channeling in crystals, and their modeling using catastrophe theory. The effects of spatial and angular focusing of channeled ions are described, with special attention given to the applications of the former effect to subatomic microscopy. The results of a thorough study of the recent high-resolution channeling experiments performed with protons of energies between 2.0 and 0.7 MeV and a 55 nm thick silicon crystal are also provided. This study opens up the potential for accurate analysis of very thin crystals. Also presented are recent results related to rainbows occurring in proton transmission through carbon nanotubes, and a detailed quantum consideration of the transmission of positrons of an energy of 1 MeV through very short carbon nanotubes. This process is determined by the rainbow effect. The initial positron beam is represented as an ensemble of non-interacting Gaussian wave packets, and the principal and supernumerary primary rainbows appearing in the spatial and angular distributions of transmitted positrons are clearly identified. They are explained by the effects of wrinkling, concentration and coordination of the wave packets. 1st ed. 2017. 2017. x, 194 S. 63 SW-Abb., 53 Farbabb. 235 mm Versandfertig in 3-5 Tagen, Hardcover, Neuware, Offene Rechnung (Vorkasse vorbehalten).
Rainbows in Channeling of Charged Particles in Crystals and Nanotubes
ISBN: 9783319615240 bzw. 3319615246, vermutlich in Englisch, Springer Shop, neu, E-Book, elektronischer Download.
This book discusses the effects, modeling, latest results, and nanotechnology applications of rainbows that appear during channeling of charged particles in crystals and nanotubes. The authors begin with a brief review of the optical and particle rainbow effects followed by a detailed description of crystal rainbows, which appear in ion channeling in crystals, and their modeling using catastrophe theory. The effects of spatial and angular focusing of channeled ions are described, with special attention given to the applications of the former effect to subatomic microscopy. The results of a thorough study of the recent high-resolution channeling experiments performed with protons of energies between 2.0 and 0.7 MeV and a 55 nm thick silicon crystal are also provided. This study opens up the potential for accurate analysis of very thin crystals. Also presented are recent results related to rainbows occurring in proton transmission through carbon nanotubes, and a detailed quantum consideration of the transmission of positrons of an energy of 1 MeV through very short carbon nanotubes. This process is determined by the rainbow effect. The initial positron beam is represented as an ensemble of non-interacting Gaussian wave packets, and the principal and supernumerary primary rainbows appearing in the spatial and angular distributions of transmitted positrons are clearly identified. They are explained by the effects of wrinkling, concentration and coordination of the wave packets. eBook.
Rainbows in Channeling of Charged Particles in Crystals and Nanotubes (Lecture Notes in Nanoscale Science and Technology) (2017)
ISBN: 9783319615240 bzw. 3319615246, in Englisch, 194 Seiten, Springer, neu, Erstausgabe, E-Book, elektronischer Download.
This book discusses the effects, modeling, latest results, and nanotechnology applications of rainbows that appear during channeling of charged particles in crystals and nanotubes. The authors begin with a brief review of the optical and particle rainbow effects followed by a detailed description of crystal rainbows, which appear in ion channeling in crystals, and their modeling using catastrophe theory. The effects of spatial and angular focusing of channeled ions are described, with special attention given to the applications of the former effect to subatomic microscopy. The results of a thorough study of the recent high-resolution channeling experiments performed with protons of energies between 2.0 and 0.7 MeV and a 55 nm thick silicon crystal are also provided. This study opens up the potential for accurate analysis of very thin crystals. Also presented are recent results related to rainbows occurring in proton transmission through carbon nanotubes, and a detailed quantum consideration of the transmission of positrons of an energy of 1 MeV through very short carbon nanotubes. This process is determined by the rainbow effect. The initial positron beam is represented as an ensemble of non-interacting Gaussian wave packets, and the principal and supernumerary primary rainbows appearing in the spatial and angular distributions of transmitted positrons are clearly identified. They are explained by the effects of wrinkling, concentration and coordination of the wave packets. , Kindle Edition, Ausgabe: 1st ed. 2017, Format: Kindle eBook, Label: Springer, Springer, Produktgruppe: eBooks, Publiziert: 2017-07-27, Freigegeben: 2017-07-27, Studio: Springer.
Rainbows in Channeling of Charged Particles in Crystals and Nanotubes
ISBN: 9783319871011 bzw. 3319871013, in Deutsch, Springer Shop, Taschenbuch, neu.
This book discusses the effects, modeling, latest results, and nanotechnology applications of rainbows that appear during channeling of charged particles in crystals and nanotubes. The authors begin with a brief review of the optical and particle rainbow effects followed by a detailed description of crystal rainbows, which appear in ion channeling in crystals, and their modeling using catastrophe theory. The effects of spatial and angular focusing of channeled ions are described, with special attention given to the applications of the former effect to subatomic microscopy. The results of a thorough study of the recent high-resolution channeling experiments performed with protons of energies between 2.0 and 0.7 MeV and a 55 nm thick silicon crystal are also provided. This study opens up the potential for accurate analysis of very thin crystals. Also presented are recent results related to rainbows occurring in proton transmission through carbon nanotubes, and a detailed quantum consideration of the transmission of positrons of an energy of 1 MeV through very short carbon nanotubes. This process is determined by the rainbow effect. The initial positron beam is represented as an ensemble of non-interacting Gaussian wave packets, and the principal and supernumerary primary rainbows appearing in the spatial and angular distributions of transmitted positrons are clearly identified. They are explained by the effects of wrinkling, concentration and coordination of the wave packets. Soft cover.
Rainbows in Channeling of Charged Particles in Crystals and Nanotubes
ISBN: 9783319615233 bzw. 3319615238, in Deutsch, neu.
This book discusses the effects, modeling, latest results, and nanotechnology applications of rainbows that appear during channeling of charged particles in crystals and nanotubes. The authors begin with a brief review of the optical and particle rainbow effects followed by a detailed description of crystal rainbows, which appear in ion channeling in crystals, and their modeling using catastrophe theory. The effects of spatial and angular focusing of channeled ions are described, with special attention given to the applications of the former effect to subatomic microscopy. The results of a thorough study of the recent high-resolution channeling experiments performed with protons of energies between 2.0 and 0.7 MeV and a 55 nm thick silicon crystal are also provided. This study opens up the potential for accurate analysis of very thin crystals. Also presented are recent results related to rainbows occurring in proton transmission through carbon nanotubes, and a detailed quantum consideration of the transmission of positrons of an energy of 1 MeV through very short carbon nanotubes. This process is determined by the rainbow effect. The initial positron beam is represented as an ensemble of non-interacting Gaussian wave packets, and the principal and supernumerary primary rainbows appearing in the spatial and angular distributions of transmitted positrons are clearly identified. They are explained by the effects of wrinkling, concentration and coordination of the wave packets.
Rainbows in Channeling of Charged Particles in Crystals and Nanotubes (2017)
ISBN: 3319871013 bzw. 9783319871011, vermutlich in Englisch, Springer International Publishing, Taschenbuch, neu, Nachdruck.
Rainbows in Channeling of Charged Particles in Crystals and Nanotubes (2017)
ISBN: 3319615238 bzw. 9783319615233, vermutlich in Englisch, Springer International Publishing, gebundenes Buch, neu.
Rainbows in Channeling of Charged Particles in Crystals and Nanotubes
ISBN: 9783319615240 bzw. 3319615246, vermutlich in Englisch, Rainbows in Channeling of Charged Particles in Crystals and Nanotubes - eBook von Srdjan Petrovic/ Nebojsa Neskovic/ Marko Cosic, neu, E-Book, elektronischer Download.
Rainbows in Channeling of Charged Particles in Crystals and Nanotubes (2018)
ISBN: 9783319871011 bzw. 3319871013, in Deutsch, gebundenes Buch, neu, Nachdruck.
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Rainbows in Channeling of Charged Particles in Crystals and Nanotubes (Lecture Notes in Nanoscale Science and Technology (25), Band 25) (2017)
ISBN: 9783319615233 bzw. 3319615238, in Englisch, 204 Seiten, Springer, gebundenes Buch, gebraucht, Erstausgabe.
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