Anisotropy of current helicity in solar active regions 1)Xu Haiqing, Gao Yu & Zhang Hongqi, NAOC 2) Kirill Kuzanyan, IZMIRAN, Russia 3) Rodion Stepanov,

Slides:



Advertisements
Similar presentations
NSF Site Visit Madison, May 1-2, 2006 Magnetic Helicity Conservation and Transport R. Kulsrud and H. Ji for participants of the Center for Magnetic Self-organization.
Advertisements

The solar dynamo(s) Fausto Cattaneo Center for Magnetic Self-Organization in Laboratory and Astrophysical Plasmas Chicago 2003.
Outline Dynamo: theoretical General considerations and plans Progress report Dynamo action associated with astrophysical jets Progress report Dynamo: experiment.
Vu Pham A new dynamo pattern revealed by the tilt angle of bipolar sunspot groups Egor Illarionov Moscow State University Helicity Thinkshop on Solar Physics.
2011/08/ ILWS Science Workshop1 Solar cycle prediction using dynamos and its implication for the solar cycle Jie Jiang National Astronomical Observatories,
Nonlinearity of the force-free parameter over active regions. M.Hagino and T.Sakurai National Astronomical Observatory of Japan, Solar Observatory.
H.N. Wang 1 , H. He 1, X. Huang 1, Z. L. Du 1 L. Y. Zhang 1 and Y. M. Cui 2 L. Y. Zhang 1 and Y. M. Cui 2 1 National Astronomical Observatories 2 National.
NWS Calibration Workshop, LMRFC March, 2009 Slide 1 Sacramento Model Derivation of Initial Parameters.
Cosmological Seed Fields versus Seed Fields Generated in Protogalaxies Dmitry Sokoloff Moscow State University Moscow, Russia in collaboration with D.Moss.
SOLIS: Status and results Alexei A. Pevtsov (National Solar Observatory, USA)
1. 2 Apologies from Ed and Karl-Heinz
Coronal Mass Ejections - the exhaust of modern dynamos Examples: systematic swirl (helicity) Measuring it quantitatively Connection with the dynamo Axel.
Magnetic Helicity and Energetics in Solar Active Regions: Can we calculate them – why do we need them? Manolis K. Georgoulis JHU/APL Whistler, CA, 08/01/07.
Can We Determine Electric Fields and Poynting Fluxes from Vector Magnetograms and Doppler Shifts? by George Fisher, Brian Welsch, and Bill Abbett Space.
New Mechanism of Generation of Large-Scale Magnetic Field in Turbulence with Large-Scale Velocity Shear I. ROGACHEVSKII, N. KLEEORIN, E. LIVERTS Ben-Gurion.
Free Energies via Velocity Estimates B.T. Welsch & G.H. Fisher, Space Sciences Lab, UC Berkeley.
Magnetic Helicity • Magnetic helicity measures
Dr. Alexei A. Pevtsov Helicity on the Sun. If you worry about publicity Do not speak of Current Helicity Jan Stenflo.
Study of magnetic helicity in solar active regions: For a better understanding of solar flares Sung-Hong Park Center for Solar-Terrestrial Research New.
Kinetic and Magnetic Helicities of Solar Active Regions Ram Ajor Maurya, Ashok Ambastha And Vema Reddy Udaipur Solar Observatory Physical Research Laboratory,
Active Region Flux Transport Observational Techniques, Results, & Implications B. T. Welsch G. H. Fisher
Sung-Hong Park Space Weather Research Laboratory New Jersey Institute of Technology Study of Magnetic Helicity and Its Relationship with Solar Activities:
Knots and Bolts of Solar Helicity Dr. Alexei A. Pevtsov “If You are after good publicity, You should not speak about current helicity” – Jan Stenflo.
Prediction on Time-Scales of Years to Decades Discussion Group A.
Helicity and Dynamo theory (Solar Magnetic Fields) Kirill Kuzanyan 1,2 ) 1) IZMIRAN, Russian Academy of Sciences, Moscow, Russia 2) Visiting Professor.
Statistical properties of current helicity and twist distribution in the solar cycle by high resolution data from SOT/SP on board Hinode K. Otsuji 1),
Sunspots: the interface between dynamos and the theory of stellar atmospheres Axel Brandenburg (Nordita/Stockholm) 70 yr Guenther.
Comparison on Calculated Helicity Parameters at Different Observing Sites Haiqing Xu (NAOC) Collaborators: Hongqi, Zhang, NAOC Kirill Kuzanyan, IZMIRAN,
The Flux Transport Dynamo, Flux Tubes and Helicity The Flux Transport Dynamo, Flux Tubes and Helicity Arnab Rai Choudhuri Department of Physics Indian.
1 Mei Zhang ( National Astronomical Observatory, Chinese Academy of Sciences ) Helicity Transport from the convection zone to interplanetary space Collaborators:
Coronal Mass Ejection As a Result of Magnetic Helicity Accumulation
Effect of Magnetic Helicity on Non-Helical Turbulent Dynamos N. KLEEORIN and I. ROGACHEVSKII Ben-Gurion University of the Negev, Beer Sheva, ISRAEL.
Helicity as a Constraint on the Solar Dynamo Alexei A. Pevtsov If you worry about publicity Do not speak of Current Helicity Jan Stenflo.
1 This is how it looks like… Magnetic helicity at the solar surface and in the solar wind Axel Brandenburg (Nordita, Stockholm) Properties of magn helicity.
Helicity Observations by Huairou Vector Magnetograph Mei Zhang National Astronomical Observatory, Chinese Academy of Sciences Plan of the Talk: 1.Huairou.
Helicity Condensation: The Origin of Coronal/Heliospheric Structure S. K. Antiochos, C. R. DeVore, et al NASA/GSFC Key features of the corona and wind.
Practical Calculation of Magnetic Energy and Relative Magnetic Helicity Budgets in Solar Active Regions Manolis K. Georgoulis Research Center for Astronomy.
Azimuth disambiguation of solar vector magnetograms M. K. Georgoulis JHU/APL Johns Hopkins Rd., Laurel, MD 20723, USA Ambiguity Workshop Boulder,
1 Multi-spacecraft, multi-scale investigation of intermittency and multifractal structure of turbulence in the terrestrial magnetosheath M. Echim (1,2),
Turbulent Dynamos: How I learned to ignore kinematic dynamo theory MFUV 2015 With Amir Jafari and Ben Jackel.
Numerical simulations of astrophysical dynamos Axel Brandenburg (Nordita, Stockholm) Dynamos: numerical issues Alpha dynamos do exist: linear and nonlinear.
The Solar Dynamo NSO Solar Physics Summer School Tamara Rogers, HAO June 15, 2007.
Observation on Current Helicity and Subsurface Kinetic Helicity in Solar Active Regions Gao Yu Helicity Thinkshop Main Collaborators: Zhang, H.
D.Sokoloff,Egor Illarionov Moscow State University, Russia Alexander Smirnov, Peter Akhmetyev IZMIRAN, Helicity Thinkshop on Solar Physics October 27-31,
1 Mei Zhang ( National Astronomical Observatory, Chinese Academy of Sciences ) Solar cycle variation of kinetic helicity Collaborators: Junwei Zhao (Stanford,
Негауссовские распределения спиральности солнечных магнитных полей в цикле активности Kuzanyan Kirill Kuzanyan Kirill; Sokoloff Dmitry (IZMIRAN, RAS &
-1- Solar wind turbulence from radio occultation data Chashei, I.V. Lebedev Physical Institute, Moscow, Russia Efimov, A.I., Institute of Radio Engineering.
1 Yongliang Song & Mei Zhang (National Astronomical Observatory of China) The effect of non-radial magnetic field on measuring helicity transfer rate.
ИЗМЕНЕНИЯ МАГНИТНОЙ СПИРАЛЬНОСТИ В СОЛНЕЧНОМ ЦИКЛЕ Kirill Kuzanyan ИЗМИРАН, Россия Zhang H., Gao Yu Национальные Астрономические Обсерватории АН КНР.
Thought in 2000: Magnetic helicity is an important theoretical concept Pascal Démoulin but there is no way to estimate it from observations.
Calibration of Solar Magnetograms and 180 degree ambiguity resolution Moon, Yong-Jae ( 文 鎔 梓 ) (Korea Astronomy and Space Science Institute)
Solar Magnetism: Solar Cycle Solar Dynamo Coronal Magnetic Field CSI 662 / ASTR 769 Lect. 03, February 6 Spring 2007 References: NASA/MSFC Solar Physics.
Spectrum and small-scale structures in MHD turbulence Joanne Mason, CMSO/University of Chicago Stanislav Boldyrev, CMSO/University of Madison at Wisconsin.
What we can learn from active region flux emergence David Alexander Rice University Collaborators: Lirong Tian (Rice) Yuhong Fan (HAO)
H. Isobe Plasma seminar 2004/06/16 1. Explaining the latitudinal distribution of sunspots with deep meridional flow D. Nandy and A.R. Choudhhuri 2002,
2. Method outline2. Method outline Equation of relative helicity (Berger 1985): - : the fourier transform of normal component of magnetic field on the.
Axel Brandenburg & Jörn Warnecke NorditaStockholm  loop emergence –Buoyant rise –Many scale heights –Twist needed Dynamo –bi-helical field Emergence.
SOHO/ESA/NASA Solar cycle - modeling and predicting Petri Käpylä NORDITA AlbaNova University Center Stockholm, Sweden Stockholm, 2nd Feb 2007 SST NASA.
Helicity Thinkshop 2009, Beijing Asymmetry of helicity injection in emerging active regions L. Tian, D. Alexander Rice University, USA Y. Liu Yunnan Astronomical.
Thought in 2000: Magnetic helicity is an important theoretical concept Pascal Démoulin but there is no way to estimate it from observations.
CMEs: Taking magnetic helicity from low corona
Solar Magnetic Field Reversal and the Role of Dynamo Families
Magnetic Helicity in Emerging Active Regions
Magnetic Helicity in Emerging Active Regions: A Statistical Study
Estimates of the forthcoming solar cycles 24 and 25
Thought in 2000: Magnetic helicity is an important theoretical concept
Dynamo action & MHD turbulence (in the ISM, hopefully…)
Introduction to Space Weather
Magnetic Helicity in Solar Active Regions: Some Observational Results
Magnetic Helicity In Emerging Active Regions: A Statistical Study
Presentation transcript:

Anisotropy of current helicity in solar active regions 1)Xu Haiqing, Gao Yu & Zhang Hongqi, NAOC 2) Kirill Kuzanyan, IZMIRAN, Russia 3) Rodion Stepanov, ICMM, Perm, Russia 4) Dmitry Sokoloff, Moscow University, Russia Helicity forever!

The role of helicity in dynamos Magnetic Helicity = inviscid invariant Cross helicity = inviscid invariant (Woltjer 1958; Moffat 1969)

Magnetic and Current Helicities Magnetic Helicity dissipation rate (e.g., Berger & Field 1984) Relation between current helicity in active regions and mean-field magnetic helicity (Zhang, Moss, Kleeorin, Kuzanyan, Rogachevskii, Sokoloff, Gao, Xu 2012)

Correlation of Helicities

The Role of Helicities in Dynamo Inviscid integrals magnetic helicity A. B (for turbulent motion, at all scales!) cross-helicity U. B (for no-scale separation MHD) Non-linear back reaction in dynamo self-consistent models

Reduction of Vector Magnetic Field from Polarized Light Magnitude (calibration required!) Under the assumption of weak field (calibration required!) the magnetic field is related to the parameters of polarized light. Though some observational problems exist! In real measurements multi-frame averaging is employed to improve the ratio of signal-to- noise.

observations Observable !

Question How the part of current helicity is really related to the entire quantity??? : How good is local homogeneity approximation? (keep in mind!) ! Observable current helicity is really related to mean magnetic helicity in the model ! (Zhang et al ApJ)

An estimate for the current helicity of active regions Zhang, Moss, Kleeorin, Kuzanyan, Rogachevskii, Sokoloff, Gao, Xu (2012)

Computation of electric current helicity in solar active regions Seehafer (1990); Pevtsov & Canfield (1994); Abramenko et al.(1996);Bao & Zhang(1998); Hagino & Sakurai ( ) twist

мп,сп,закр magnetic field current helicity twist

AR NOAA6619 on 03:26UT (Huairou) Photosphetic vector magnetogramCurrent helicity over filtergram

Helicity is naturally very noisy (e.g.)The average value of current helicity H C = −8.7 · 10 −3 G 2 m −1 the standard deviation 8 · 10 −2 G 2 m −1 (factor 9). changing dramatically on a short range of spatial and temporal scales, related to the size of individual active regions as well as their life time

20 years systematic monitoring of the solar vector magnetic fields in active regions taken at Huairou Solar observing station, China ( ) More observations from Mitaka (Japan) and also Mees, MSFC (USA) etc., but only Huairou data systematically cover 20 years period.

Helicity over the solar cycle: Zhang et al. ( )

Important observational properties of helicity: Hemispheric Sign Rule: North=negative; South=positive Systematic reversal of the sign at some latitudes in the beginning and end of the solar cycle

Using helicity for constraining dynamo models of the solar cycle We know how helicity behaves with the solar cycle and how migrates over the latitude We need a self-consistent model which is in accord with these observational facts! (after publications of Zhang, Moss, Kleeorin, Rogachevskijj, Sokoloff, Kuzanyan, Gao & Xu, )

2D distributed dynamo with algebraic alpha-quenching, near-surface (example)

Definition of current helicity

Definition of curl for any vector F Decomposition of current helicity into six parts:

Integration by parts: equalities If we assume the magnetic field outside the active region is weak, and so we can use the formula for integration by parts (typical accuracy ~3-5%). Then the derivatives swap.

Example of PDF for helicities (hr)

Model of turbulent magnetic field after Volegova & Stepanov, 2009 JETP

Formulation of the model 1) Random phase of turbulent flow 2) Realistic prescribed energy spectrum with dominating scale 3) Solenoidality condition 4) Prescribed Integral Helicity, so we can set =0 or non-zero.

Stepanov et al. (2013), submitted:

Isotropic helical case

HXHX HYHY HZHZ BXBX BYBY BzBz

Non helical case Numerical simulation of turbulent convection

Example of PDF for helicities (hr)

Observational Example of PDF for helicities: to compare with theory

Examples of PDF for helicities hr filtering

HzH1H2 Helical Magnetic Field Helical + Potential Magnetic Field Non- Helical Magnetic Field

Notice! The addition of potential magnetic field does contribute each of the helicity parts! but it does not contribute to the sum of them, i.e. to the entire helicity

Comparison of Helicity parts time-latitudinal averaging

Overall data: no immediate link between the helicity parts (H1,H2 weak anti- correlation) H1=H6 H2=H3

Contributions to “overall” helicity

Notice! At the phases of beginning and end of each cycle there is a certain range of latitudes where the sign of overall helicity changes to the opposite of the one give my hemispheric rule. One may note that during these phases the signs of both pairs of helicity parts are often the same, which makes their joint contribution to the opposite to the hemispheric rule sign

Odd and Even parts of Helicity

Odd and Even (for the sum)

Discussion 1)While we see that the sum of available helicity parts H 1 and H 2 has clear cyclic behaviour, its parts alone are less regular and behave less similar to each other 2)The parts alone much less follow the Hemispheric Sign Rule for Helicity. They disobey the rule at the beginning and the end of the cycle somehow synchronously 3) The Odd parts of the helicity parts look more regular with the cycle than the Even parts

Conclusions There are possible causes of anisotropy that require further investigation: 1) Stratification 2) Rotation, Meridional Circulation, Differential rotation (Torsion Oscillations?) 3) Mean magnetic field 4) Data bias

Xie-xie! 谢 СПАСИБО!