15 research outputs found

    Study of cosmic ray scintillations from 5-minute data of the scintillations telescope Izmran and world-wide network stations

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    During cosmic ray propagation in interplanetary space there appear characteristic cosmic-ray intensity scintillations which are due to charged particle scattering on random inhomogeneities of the interplanetary magnetic field. The power spectra of cosmic ray scintillations on the Earth during some intervals from 1977 to 1982 (for quiet periods, for solar flares and Forbush decreases due to power shock waves) have been calculated from five-minute, one and two-hour values of the cosmic-ray intensity measured by the scintillator supertelescope IZMIRAN. The spectra were estimated by the methods of spectral analysis and by autoregressive methods which mutually control each other and make it possible not only to analyze scintillation powers at distinguished frequencies, but also to determine the behavior of spectrum slopes in some frequency ranges

    Thirty-Year Periodicity of Cosmic Rays

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    Cosmogenic isotopes have frequently been employed as proxies of ancient cosmic ray fluxes. On the basis of periodicities of the 10Be time series (using data from both the South and North Poles) and the 14C time series (with data from Intercal-98), we offer evidence of the existence of cosmic ray fluctuations with a periodicity of around 30 years. Results were obtained by using the wavelet transformation spectral technique, signal reconstruction by autoregressive spectral analysis (ARMA), and the Lomb-Scargle periodogram method. This 30-year periodicity seems to be significant in nature because several solar and climatic indexes exhibit the same modulation, which may indicate that the 30-year frequency of cosmic rays is probably a modulator agent for terrestrial phenomena, reflecting the control source, namely, solar activity

    Influence of solar activity on hydrological processes

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    International audienceThe relationship between solar activity and the water volumes of lakes is searched here by means of correlational and spectral analysis methods. The level of two lakes, P谩tzcuaro in M茅xico and Tchudskoye in Russia, together with solar activity indexes are used for the analysis. It is found that the source of the oscillation mechanism of the level of those lakes is the solar activity cycle through its influence on the magnetosphere and the terrestrial atmosphere. The present study allows for the development of long-period prognostic of water volumes of big lakes

    Prediction of interplanetary shock waves using cosmic ray fluctuations

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    En el trabajo se propone usar m茅todos espectrales y autorregresivos para mejorar los procesos de detecci贸n de variaciones en la composici贸n espectral de la intensidad de rayos c贸smicos y de la componente Bz del campo magn茅tico interplanetario. Usando esta metodolog铆a, se determinaron algunas regularidades en la variaci贸n del espectro de potencias de la intensidad de los rayos c贸smicos antes del arribo de una onda de choque a la Tierra. As铆, el arribo de la onda de choque es precedido por la aparici贸n de una onda con per铆odo de 4 a 8 horas en el espectro de potencias de la componente Bz del campo magn茅tico. Los resultados confirman la posibilidad de usar los rayos c贸smicos y la actividad geomagn茅tica para el diagn贸stico del medio interplanetario y la predicci贸n del arribo de ondas de choque a la Tierra, con una anticipaci贸n de 1 a 2 d铆as. doi: https://doi.org/10.22201/igeof.00167169p.1998.37.2.39

    Simulating the mechanism of the action of heliophysical parameters on atmospheric processes

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    Con objeto de poder predecir fen贸menos meteorol贸gicos y clim谩ticos se realiza una simulaci贸n de los procesos heliof铆sicos sabre los procesos atmosf茅ricos en la Tierra. Previamente, presentamos una revisi贸n de los mecanismos f铆sicos de la influencia de la actividad solar, actividad geomagn茅tica y de otros factores cosmof铆sicos sobre el comportamiento del tiempo, presi贸n, temperatura, precipitaci贸n, tormentas y circulaci贸n atmosf茅rica. Se discuten los mecanismos de influencia de la actividad solar sabre los par谩metros meteorol贸gicos y climatol贸gicos as铆 como el comportamiento de los datos experimentales de esos par谩metros durante diferentes ciclos de la actividad solar. Se comparan las predicciones de modelos te贸ricos de la influencia de la actividad solar sobre la atm贸sfera baja con el comportamiento de los datos experimentales: nuestros resultados demuestran la existencia de una estrecha relaci贸n entre las variaciones de los par谩metros atmosf茅ricos, las variaciones de los rayos c贸smicos gal谩cticos, los rayos c贸smicos solares y transparencia atmosf茅rica. Se analizan las predicciones de los diferentes modelos en el campo de la helioclimatolog铆a y se demuestra que el modelo de Pudovkin sobre la influencia de la actividad solar sobre la baja atm贸sfera es razonablemente correcto. Finalmente, se propone un m茅todo para la predicci贸n de los diferentes par谩metros meteorol贸gicos y climatol贸gicos usando datos anteriores de estos par谩metros conjuntamente con datos de actividad solar, rayos c贸smicos gal谩cticos y rayos c贸smicos solares
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