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Titlebook: Cosmic Rays and Earth; Proceedings of an IS J. W. Bieber,E. Eroshenko,R. Kallenbach Conference proceedings 2000 Springer Science+Business M

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書目名稱Cosmic Rays and Earth
副標(biāo)題Proceedings of an IS
編輯J. W. Bieber,E. Eroshenko,R. Kallenbach
視頻videohttp://file.papertrans.cn/239/238895/238895.mp4
叢書名稱Space Sciences Series of ISSI
圖書封面Titlebook: Cosmic Rays and Earth; Proceedings of an IS J. W. Bieber,E. Eroshenko,R. Kallenbach Conference proceedings 2000 Springer Science+Business M
描述The year 1998 marked the 50th anniversary of the invention of the neutron monitor, a key research tool in the field of space physics and solar-terrestrial relations. In honor of this occasion a workshop entitled ‘Cosmic Rays and Earth‘ was organized to review the detection of cosmic rays at the surface and in the lower atmosphere of Earth, including the effect that this radiation has on the terrestrial environment. A special focus was the role of neutron monitors in the investigation of this radiation, on the science enabled by the unique dataset of the worldwide network of neutron monitors, and on continuing opportunities to use these data to solve outstanding problems. This book is the principal product of that workshop, integrating the contribu- tions of all participants. Following a general summary of the workshop prepared by the editors, the volume leads off with a keynote article by Professor John Simpson describing his invention of the neutron monitor in 1948 and the early scientific discoveries made with this instrument.
出版日期Conference proceedings 2000
關(guān)鍵詞Neutron; atmosphere; cosmic ray; earth; geophysics; heliosphere; space weather
版次1
doihttps://doi.org/10.1007/978-94-017-1187-6
isbn_softcover978-90-481-5615-3
isbn_ebook978-94-017-1187-6Series ISSN 1385-7525
issn_series 1385-7525
copyrightSpringer Science+Business Media Dordrecht 2000
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erplanetary medium. Such regions, and the shocks which they may generate, have pronounced effects on cosmic ray densities both locally and at some distance away. These energetic particle effects can often be used to identify CMEs in the interplanetary medium, where they are usually called ‘ejecta’.
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g topics are discussed: observations of the cosmic ray modulation at the Earth and main characteristics of the accumulated experimental data; manifestations of the solar magnetic cycle in cosmic rays; the effect of hysteresis and its relation to the size of the heliosphere; the rigidity spectrum of
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erates its own detectors and offers the opportunity to extend the cosmic-ray records over much longer time scales. Two different types of ‘natural detectors’ can be distinguished. The first is based on long lived radionuclides that are produced by cosmic-ray interactions in the atmosphere and subseq
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ntal problems of modern astrophysics. It is the aim of this paper to review new developments in the understanding of mechanisms involved in the scattering of charged particles by magnetic field fluctuations. Special emphasis is given to a comparison of transport parameters determined from the modeli
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ons, initiated in the solar atmosphere, affect galactic cosmic rays. In some cases their influence on the cosmic ray intensity results in data signatures that can possibly be used to predict geomagnetic storm onsets. Case studies illustrating the complexity of the cosmic ray effects and related geom
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ship between the two, it is expected and found that the Earth’s temperature follows more closely decade variations in cosmic ray flux than other solar activity parameters. If the relationship is real the state of the Heliosphere affects the Earth’s climate.
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