Indication of the Hanle Effect by Comparing the Scattering Polarization Observed by CLASP in the Lyα and Si iii 120.65 nm Lines

The Chromospheric Lyman-Alpha Spectro-Polarimeter is a sounding rocket experiment that has provided the first successful measurement of the linear polarization produced by scattering processes in the hydrogen Lyα line (121.57 nm) radiation of the solar disk. In this paper, we report that the Si III line at 120.65nm also shows scattering polarization and we compare the scattering polarization signals observed in the Lyα and Si III lines in order to search for observational signatures of the Hanle effect. We focus on four selected bright structures and investigate how the U/I spatial variations vary between the Lyα wing, the Lyα core, and the Si III line as a function of the total unsigned photospheric magnetic flux estimated from Solar Dynamics Observatory/Helioseismic and Magnetic Imager observations. In an internetwork region, the Lyα core shows an antisymmetric spatial variation across the selected bright structure, but it does not show it in other more magnetized regions. In the Si III line, the spatial variation of U/I deviates from the above-mentioned antisymmetric shape as the total unsigned photospheric magnetic flux increases. A plausible explanation of this difference is the operation of the Hanle effect. We argue that diagnostic techniques based on the scattering polarization observed simultaneously in two spectral lines with very different sensitivities to the Hanle effect, like Lyα and Si III, are of great potential interest for exploring the magnetism of the upper solar chromosphere and transition region.

[1]  Mats Carlsson,et al.  THREE-DIMENSIONAL RADIATIVE TRANSFER SIMULATIONS OF THE SCATTERING POLARIZATION OF THE HYDROGEN LYα LINE IN A MAGNETOHYDRODYNAMIC MODEL OF THE CHROMOSPHERE–CORONA TRANSITION REGION , 2015, 1501.06382.

[2]  Hirohisa Hara,et al.  Birefringence of magnesium fluoride in the vacuum ultraviolet and application to a half-waveplate. , 2013, Applied optics.

[3]  Jonathan Cirtain,et al.  VUV testing of science cameras at MSFC: QE measurement of the CLASP flight cameras , 2015, SPIE Optical Engineering + Applications.

[4]  T. Bando,et al.  Polarization Calibration of the Chromospheric Lyman-Alpha SpectroPolarimeter for a 0.1% Polarization Sensitivity in the VUV Range. Part II: In-Flight Calibration , 2016 .

[5]  Luca Belluzzi,et al.  THE Lyα LINES OF H i AND He ii: A DIFFERENTIAL HANLE EFFECT FOR EXPLORING THE MAGNETISM OF THE SOLAR TRANSITION REGION , 2011, 1112.4746.

[6]  T. Bando,et al.  Optical alignment of the Chromospheric Lyman-Alpha Spectro-Polarimeter using sophisticated methods to minimize activities under vacuum , 2016, Astronomical Telescopes + Instrumentation.

[7]  Roberto Casini,et al.  THE HANLE EFFECT OF THE HYDROGEN Lyα LINE FOR PROBING THE MAGNETISM OF THE SOLAR TRANSITION REGION , 2011, 1107.4787.

[8]  W. Pesnell,et al.  The Solar Dynamics Observatory (SDO) , 2012 .

[9]  D. Dravins,et al.  Search for spectral line polarization in the solar vacuum ultraviolet , 1980 .

[10]  Hirohisa Hara,et al.  Chromospheric Lyman-alpha spectro-polarimeter (CLASP) , 2012, Other Conferences.

[11]  Luca Belluzzi,et al.  THE POLARIZATION OF THE SOLAR Mg ii h AND k LINES , 2012, 1203.4351.

[12]  Yukio Katsukawa,et al.  High-Reflectivity Coatings for a Vacuum Ultraviolet Spectropolarimeter , 2017 .

[13]  Yukio Katsukawa,et al.  Chromospheric Anemone Jets as Evidence of Ubiquitous Reconnection , 2007, Science.

[14]  Pierre Laporte,et al.  Vacuum-ultraviolet refractive index of LiF and MgF 2 in the temperature range 80–300 K , 1983 .

[15]  Toshifumi Shimizu,et al.  Development of a Precise Polarization Modulator for UV Spectropolarimetry , 2015 .

[16]  Luca Belluzzi,et al.  THE SCATTERING POLARIZATION OF THE Lyα LINES OF H i AND He ii TAKING INTO ACCOUNT PARTIAL FREQUENCY REDISTRIBUTION AND J-STATE INTERFERENCE EFFECTS , 2012, 1207.0415.

[17]  R. M. Sainz,et al.  SCATTERING POLARIZATION AND HANLE EFFECT IN STELLAR ATMOSPHERES WITH HORIZONTAL INHOMOGENEITIES , 2011, 1108.2958.

[18]  A. Asensio Ramos,et al.  ON THE INVERSION OF THE SCATTERING POLARIZATION AND THE HANLE EFFECT SIGNALS IN THE HYDROGEN Lyα LINE , 2014, 1404.0786.

[19]  J. C. del Toro Iniesta,et al.  Sunrise: INSTRUMENT, MISSION, DATA, AND FIRST RESULTS , 2010, 1008.3460.

[20]  Yukio Katsukawa,et al.  DISCOVERY OF UBIQUITOUS FAST-PROPAGATING INTENSITY DISTURBANCES BY THE CHROMOSPHERIC LYMAN ALPHA SPECTROPOLARIMETER (CLASP) , 2016 .

[21]  Jonathan Cirtain,et al.  Performance characterization of UV science cameras developed for the Chromospheric Lyman-Alpha Spectro-Polarimeter (CLASP) , 2014, Astronomical Telescopes and Instrumentation.

[22]  J. T. Hoeksema,et al.  The Helioseismic and Magnetic Imager (HMI) Investigation for the Solar Dynamics Observatory (SDO) , 2012 .

[23]  Yukio Katsukawa,et al.  The Hinode Spectro-Polarimeter , 2013 .

[24]  A M Title,et al.  Small-Scale Jetlike Features in Penumbral Chromospheres , 2007, Science.

[25]  V Chandrasekharan,et al.  Anomalous dispersion of birefringence of sapphire and magnesium fluoride in the vacuum ultraviolet. , 1969, Applied optics.

[26]  T. Kosugi,et al.  The Hinode (Solar-B) Mission: An Overview , 2007 .

[27]  T. Bando,et al.  Discovery of Scattering Polarization in the Hydrogen Lyα Line of the Solar Disk Radiation , 2017, 1704.03228.

[28]  Noriyuki Narukage,et al.  Strategy for Realizing High-Precision VUV Spectro-Polarimeter , 2014 .

[29]  Toshifumi Shimizu,et al.  Polarization Calibration of the Solar Optical Telescope onboard Hinode , 2008 .

[30]  Toshifumi Shimizu,et al.  Coronal Transverse Magnetohydrodynamic Waves in a Solar Prominence , 2007, Science.

[31]  Yukio Katsukawa,et al.  The Solar Optical Telescope of Solar-B (Hinode): The Optical Telescope Assembly , 2008 .

[32]  W. Johnson,et al.  Magnesium Fluoride Polarizing Prism for the Vacuum Ultraviolet , 1964 .

[33]  J. C. del Toro Iniesta,et al.  The Imaging Magnetograph eXperiment (IMaX) for the Sunrise Balloon-Borne Solar Observatory , 2010, 1009.1095.

[34]  B. Jurcevich,et al.  The Solar Optical Telescope for the Hinode Mission: An Overview , 2007, 0711.1715.

[35]  Toshifumi Shimizu,et al.  Image Stabilization System for Hinode (Solar-B) Solar Optical Telescope , 2008 .

[36]  Ken Kobayashi,et al.  Vacuum ultraviolet spectropolarimeter design for precise polarization measurements. , 2015, Applied optics.

[37]  C. J. Wolfson,et al.  The Atmospheric Imaging Assembly (AIA) on the Solar Dynamics Observatory (SDO) , 2011 .