We investigate the solar cycle variation of microwave and extreme ultraviolet (EUV) intensity in latitude to compare microwave polar brightening (MPB) with the EUV polar coronal hole (CH). For this study, we used the full-sun images observed in 17 GHz of the Nobeyama Radioheliograph from 1992 July to 2016 November and in two EUV channels of the Atmospheric Imaging Assembly (AIA) 193 A° and 171 A° on the Solar Dynamics Observatory (SDO) from 2011 January to 2016 November. As a result, we found that the polar intensity in EUV is anti-correlated with the polar intensity in microwave. Since the depression of EUV intensity in the pole is mostly owing to the CH appearance and continuation there, the anti-correlation in the intensity implies the intimate association between the polar CH and the MPB. Considering the report of Gopalswamy et al. (1999) that the enhanced microwave brightness in the CH is seen above the enhanced photospheric magnetic field, we suggest that the pole area during the solar minimum has a stronger magnetic field than the quiet sun level and such a strong field in the pole results in the formation of the polar CH. The emission mechanism of the MPB and the physical link with the polar CH are not still fully understood. It is necessary to investigate the MPB using high resolution microwave imaging data, which can be obtained by the high performance large-array radio observatories such as the ALMA project.
It. has been discovered that. active regions commonly have numerous flare-like transient. loop brightenings. We use a magnetic reconnection theory driven by a ponderamotive force on account. of the basic properties of a transient. brightening: lifetime a few mins, total energy 10 25~10 29 erg. The numerical results are consistent with the observations.
미네랄은 이온 상태로 존재하기 때문에, 카보머나 아크릴레이트 계 점증 시스템의 저점도 가용화 제형에서는 고농도로 안정화하기 어렵다. 본 연구에서는 젤 에센스 제형 내 고농도의 미네랄을 안정화하기 위하여, 염류에 안정한 실리콘 코폴리올을 이용한 네트워크 필름을 만들고, 네트워크 내에 미네랄을 고농도로 포집하여 피부에 오랜 시간 동안 고농도의 미네랄이 천천히 피부에 흡수될 수 있도록 제형을 설계하였다. 설계한 최적의 제형을 시료로 이용하여 6주간의 임상실험을 진행하였으며, 그 결과 피부 각질층의 미네랄 함량이 증가하고, 아미노산이 증가함으로써 각질층의 수분량이 증가하여 피부 투명도가 증가하였고 묵은 각질이 탈락하고 각질층이 정돈되어 피부 칙칙함과 피부 밝기가 개선됨을 확인하였다.