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論文

Characteristics of temporal variability of long-duration bursts of high-energy radiation associated with thunderclouds on the Tibetan plateau

土屋 晴文; 日比野 欣也*; 川田 和正*; 大西 宗博*; 瀧田 正人*; 宗像 一起*; 加藤 千尋*; 霜田 進*; Shi, Q.*; Wang, S.*; et al.

Progress of Earth and Planetary Science (Internet), 11, p.26_1 - 26_14, 2024/05

From 1998 to 2017, neutron monitors located at an altitude of 4300 m on the Tibetan plateau detected 127 long-duration bursts of high-energy radiation in association with thunderclouds. These bursts typically lasted for 10-40 min, and 89% of them occurred between 10:00 and 24:00 local time. They were also found to be more likely to occur at night, especially during 18:00-06:00 local time period. The observed diurnal and seasonal variations in burst frequency were consistent with the frequencies of lightning and precipitation on the Tibetan plateau. Based on 19 years of data, the present study suggests that an annual variation in burst frequency has a periodicity of $$sim$$16 years and a lag of $$sim$$3 years relative to solar activity.

口頭

Observations of radiation enhancements due to thunderstorms at an altitude of 4300 m

土屋 晴文; 日比野 欣也*; 川田 和正*; 大西 宗博*

no journal, , 

Recent observations related to thunderstorms show that there are three types of radiation enhancements based on their duration; terrestrial gamma-ray flashes (TGFs) with duration of 1 ms or less, short bursts (or TGF afterglows) with duration of a few tens of ms to a few hundred ms, and long bursts (or gamma-ray glows) with duration of a few minutes to a few tens of minutes. Such a thunderstorm-related radiation consists of not only bremsstrahlung emissions due to accelerated electrons, but also neutrons and/or the subsequent prompt gamma rays. It is currently debated how those radiation enhancements with different durations and/or different particles are generated in lightning and thunderclouds. A high-mountain observatory, located at an altitude of 4300 m (Yangbajing, Tibet), has neutron monitors with an area of 32 m$$^{2}$$. Neutron monitors are mainly sensitive to hadrons of neutron and protons, but has a small detection efficiency of gamma rays and other leptons. Therefore, neutron monitors can give us insights into production mechanism of radiation increases due to thunderstorms. During rainy seasons from 1998 to 2017, the Tibet neutron monitors detected around 140 significant enhancements of long bursts. Observed duration ranged from 5 minutes to 50 minutes, with the peak of around 10-20 minutes. In addition, electric-filed measurements, which started from 2010 at the site, showed that the observed increases correlate with electric-field variations caused by thunderclouds and/or lightning. Using the results observed by the Tibet neutron monitors and other meteorological information, we discuss in this presentation how the observed long bursts are produced and what kind of particles mainly contribute to them. This work is partly supported by JSPS/MEXT KAKENHI Grants No. 18H01236.

口頭

高山での雷雲に由来する放射線の時間特性

土屋 晴文; 日比野 欣也*; 川田 和正*; 大西 宗博*; 瀧田 正人*

no journal, , 

近年、地上や高山において雷雲の発生に伴い放射線(雷雲放射線)が観測されている。雷雲放射線は、雷雲中の準定常的な電場の中で加速された電子が放つ制動放射線であると考えられている。これまでの観測から、雷雲放射線の継続時間は観測高度に大きく依存していることが知られている。例えば、日本海沿岸で観測される雷雲放射線は典型的に1分ほど継続するが、標高3000mを超える観測地点では10分ほど続くことが報告されている。この原因は、雷雲内の電場の存続時間が異なるためと考えられるが、放射線観測データが十分に得られていないため、どのような気象要因が雷雲放射線の発生に関連しているのかは明らかではない。本講演では、高度4300mのチベットにある宇宙線観測装(中性子モニタ)の1998年から2017年の間に得られたデータから探査した雷雲放射線の時間特性を示すとともに、チベット高原での雷や降雨の時間特性と比較する。そうした比較から、雷雲放射線がチベット高原にて雷の頻発する時刻(10時-22時)や雨季に発生しやすいことを確認した。加えて、太陽活動との比較を行い、雷雲放射線の発生頻度の年変動についても議論する。

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