Quiet Sun magnetic fields: an observational view

被引:96
|
作者
Bellot Rubio, Luis [1 ]
Orozco Suarez, David [1 ]
机构
[1] CSIC, Inst Astrofis Andalucia, Glorieta Astron S-N, E-18008 Granada, Spain
关键词
Magnetic fields; Polarization; Quiet Sun; BAND CIRCULAR-POLARIZATION; 2ND SOLAR SPECTRUM; STOKES-V PROFILES; I-4607 ANGSTROM LINE; TO-LIMB VARIATION; HIGH-RESOLUTION; INFRARED LINES; SCATTERING POLARIZATION; HINODE OBSERVATIONS; FLUX EMERGENCE;
D O I
10.1007/s41116-018-0017-1
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The quiet Sun is the region of the solar surface outside of sunspots, pores, and plages. In continuum intensity it appears dominated by granular convection. However, in polarized light the quiet Sun exhibits impressive magnetic activity on a broad range of scales, from the 30,000 km of supergranular cells down to the smallest magnetic features of about 100 km resolvable with current instruments. Quiet Sun fields are observed to evolve in a coherent way, interacting with each other as they are advected by the horizontal photospheric flows. They appear and disappear over surprisingly short time scales, bringing large amounts of magnetic flux to the solar surface. For this reason they may be important contributors to the heating of the chromosphere. Peering into such fields is difficult because of the weak signals they produce, which are easily affected, and even completely hidden, by photon noise. Thus, their evolution and nature remain largely unknown. In recent years the situation has improved thanks to the advent of high-resolution, high-sensitivity spectropolarimetric measurements and the application of state-of-the-art Zeeman and Hanle effect diagnostics. Here we review this important aspect of solar magnetism, paying special attention to the techniques used to observe and characterize the fields, their evolution on the solar surface, and their physical properties as revealed by the most recent analyses. We identify the main open questions that need to be addressed in the future and offer some ideas on how to solve them.
引用
收藏
页数:124
相关论文
共 50 条
  • [31] Instrumental and Observational Artifacts in Quiet Sun Magnetic Flux Cancellation Functions
    A. Pietarila
    J. Pietarila Graham
    Solar Physics, 2013, 282 : 389 - 404
  • [32] Strength distribution of solar magnetic fields in photospheric quiet Sun regions
    Ramírez Vélez, J.C.
    López Ariste, A.
    Semel, M.
    Astronomy and Astrophysics, 2008, 487 (02): : 731 - 740
  • [33] Separators in 3D quiet-sun magnetic fields
    Close, RM
    Parnell, CE
    Priest, ER
    SOLAR PHYSICS, 2004, 225 (01) : 21 - 46
  • [35] Magnetic Fields of the Quiet Sun: A New Quantitative Perspective From Hinode
    Lites, B. W.
    Kubo, M.
    Socas-Navarro, H.
    Berger, T.
    Frank, Z.
    Shine, R.
    Tarbell, T.
    Title, A.
    Ichimoto, K.
    Katsukawa, Y.
    Tsuneta, S.
    Suematsu, Y.
    Shimizu, T.
    Nagata, S.
    FIRST RESULTS FROM HINODE, 2008, 397 : 17 - +
  • [36] Strength distribution of solar magnetic fields in photospheric quiet Sun regions
    Velez, J. C. Ramirez
    Lopez Ariste, A.
    Semel, M.
    ASTRONOMY & ASTROPHYSICS, 2008, 487 (02) : 731 - 740
  • [37] Quiet Sun magnetic fields observed by Hinode: Support for a local dynamo
    Buehler, D.
    Lagg, A.
    Solanki, S. K.
    ASTRONOMY & ASTROPHYSICS, 2013, 555
  • [38] Numerical simulations of quiet Sun magnetic fields seeded by the Biermann battery
    Khomenko, E.
    Vitas, N.
    Collados, M.
    de Vicente, A.
    ASTRONOMY & ASTROPHYSICS, 2017, 604
  • [39] Convectively Driven Sinks and Magnetic Fields in the. Quiet-Sun
    Requerey, Iker S.
    Del Toro Iniesta, Jose Carlos
    Bellot Rubio, Luis R.
    Pillet, Valentin Martinez
    Solanki, Sami K.
    Schmidt, Wolfgang
    ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES, 2017, 229 (01):
  • [40] Comparison of transient horizontal magnetic fields in a plage region and in the quiet Sun
    Ishikawa, R.
    Tsuneta, S.
    ASTRONOMY & ASTROPHYSICS, 2009, 495 (02) : 607 - 612