LONG-TERM VARIATION OF THE SOLAR DIURNAL ANISOTROPY OF GALACTIC COSMIC RAYS OBSERVED WITH THE NAGOYA MULTI-DIRECTIONAL MUON DETECTOR

被引:21
|
作者
Munakata, K. [1 ]
Kozai, M. [1 ]
Kato, C. [1 ]
Kota, J. [2 ]
机构
[1] Shinshu Univ, Dept Phys, Matsumoto, Nagano 3908621, Japan
[2] Univ Arizona, Lunar & Planetary Lab, Tucson, AZ 85721 USA
来源
ASTROPHYSICAL JOURNAL | 2014年 / 791卷 / 01期
基金
美国国家科学基金会;
关键词
cosmic rays; methods: data analysis; Sun: heliosphere; Sun: magnetic fields; PLANETARY MAGNETIC-FIELD; NORTH-SOUTH ANISOTROPY; MODULATION PARAMETERS; INTERPLANETARY SPACE; DENSITY GRADIENT; CYCLE VARIATIONS; DRIFT; TRANSPORT; MODEL; HELIOSPHERE;
D O I
10.1088/0004-637X/791/1/22
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We analyze the three-dimensional anisotropy of the galactic cosmic ray (GCR) intensities observed independently with a muon detector at Nagoya in Japan and neutron monitors over four solar activity cycles. We clearly see the phase of the free-space diurnal anisotropy shifting toward earlier hours around solar activity minima in A > 0 epochs, due to the reduced anisotropy component parallel to the mean magnetic field. This component is consistent with a rigidity-independent spectrum, while the perpendicular anisotropy component increases with GCR rigidity. We suggest that this harder spectrum of the perpendicular component is due to contribution from the drift streaming. We find that the bi-directional latitudinal density gradient is positive in theA > 0 epoch, while it is negative in the A < 0 epoch, in agreement with the drift model prediction. The radial density gradient of GCRs, on the other hand, varies with a similar to 11 yr cycle with maxima (minima) in solar maximum (minimum) periods, but we find no significant difference between the radial gradients in the A > 0 and A < 0 epochs. The corresponding parallel mean free path is larger in A < 0 than in A > 0. We also find, however, that the parallel mean free path (radial gradient) appears to persistently increase (decrease) in the last three cycles of weakening solar activity. We suggest that simple differences between these parameters in A > 0 and A < 0 epochs are seriously biased by these long-term trends.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] On the Solar Cycle Variation of the Solar Diurnal Anisotropy of Multi-TeV Cosmic-ray Intensity Observed with the Tibet Air Shower Array
    Amenomori, M.
    Bi, X. J.
    Chen, D.
    Chen, T. L.
    Chen, W. Y.
    Cui, S. W.
    Danzengluobu
    Ding, L. K.
    Feng, C. F.
    Feng, Zhaoyang
    Feng, Z. Y.
    Gou, Q. B.
    Guo, Y. Q.
    He, H. H.
    He, Z. T.
    Hibino, K.
    Hotta, N.
    Hu, Haibing
    Hu, H. B.
    Huang, J.
    Jia, H. Y.
    Jiang, L.
    Kajino, F.
    Kasahara, K.
    Katayose, Y.
    Kato, C.
    Kawata, K.
    Kozai, M.
    Labaciren
    Le, G. M.
    Li, A. F.
    Li, H. J.
    Li, W. J.
    Lin, Y. H.
    Liu, C.
    Liu, J. S.
    Liu, M. Y.
    Lu, H.
    Meng, X. R.
    Miyazaki, T.
    Munakata, K.
    Nakajima, T.
    Nakamura, Y.
    Nanjo, H.
    Nishizawa, M.
    Niwa, T.
    Ohnishi, M.
    Ohta, I
    Ozawa, S.
    Qian, X. L.
    XX INTERNATIONAL SYMPOSIUM ON VERY HIGH ENERGY COSMIC RAY INTERACTIONS (ISVHECRI 2018), 2019, 208
  • [32] Long-term variations of the surface pressure in the North Atlantic and possible association with solar activity and galactic cosmic rays
    Veretenenko, SV
    Dergachev, VA
    Dmitriyev, PB
    INFLUENCE OF THE SUN'S RADIATION AND PARTICLES ON THE EARTH'S ATMOSPHERE AND CLIMATE, 2005, 35 (03): : 484 - 490
  • [33] Global magnetic field of the Sun and long-term variations of galactic cosmic rays
    Belov, AV
    Shelting, BD
    Gushchina, RT
    Obridko, VN
    Kharshiladze, AF
    Yanke, VG
    JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2001, 63 (18) : 1923 - 1929
  • [34] SURFACE AND UNDERGROUND MEASUREMENTS OF LONG-TERM CHANGES IN COSMIC-RAY SOLAR DIURNAL-VARIATION
    THAMBYAHPILLAI, T
    SPELLER, RD
    PLANETARY AND SPACE SCIENCE, 1975, 23 (06) : 961 - 971
  • [35] Long-term variations of galactic cosmic rays in the past and future from observations of various solar activity characteristics
    Belov, A. V.
    Gushchina, R. T.
    Obridko, V. N.
    Shelting, B. D.
    Yanke, V. G.
    JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2006, 68 (11) : 1161 - 1166
  • [36] The role of drift on the diurnal anisotropy and on temporal changes in the energy spectra of the 11-year variation for galactic cosmic rays
    Alania, MV
    Aslamazashvili, RG
    Bochorishvili, TB
    Iskra, K
    Siluszyk, M
    GALACTIC AND ANOMALOUS COSMIC RAYS IN THE HELIOSPHERE: THE CYCLE 22 SOLAR MINIMUM AND THE ONSET OF CYCLE 23, 2001, 27 (03): : 613 - 618
  • [37] Long-Term Variation of the Galactic Cosmic Ray Radiation Dose Rates
    Lyu, D.
    Qin, G.
    Shen, Z. -N.
    SPACE WEATHER-THE INTERNATIONAL JOURNAL OF RESEARCH AND APPLICATIONS, 2024, 22 (01):
  • [38] The neutral sheet and the particle drift in long-term cosmic rays variation
    Krymskij, G.F.
    Krivoshapkin, P.A.
    Gerasimova, S.K.
    Grigor'ev, V.G.
    Mamrukova, V.P.
    2001, Nauka, Moscow (65):
  • [39] Long-Term Modulation of Cosmic Rays in Solar Cycles 23–24
    Yanke V.G.
    Belov A.V.
    Gushchina R.T.
    Bulletin of the Russian Academy of Sciences: Physics, 2021, 85 (09) : 1045 - 1048
  • [40] Long-term variations of cosmic rays and their relation to solar activity parameters
    Belov, AV
    Gushchina, RT
    Sirotina, IV
    GEOMAGNETIZM I AERONOMIYA, 1996, 36 (04): : 179 - 183