Advances in Observing Various Coronal EUV Waves in the SDO Era and Their Seismological Applications (Invited Review)
暂无分享,去创建一个
[1] K. Shibata,et al. A CHAIN OF WINKING (OSCILLATING) FILAMENTS TRIGGERED BY AN INVISIBLE EXTREME-ULTRAVIOLET WAVE , 2014, 1403.7705.
[2] D. S. Bloomfield,et al. CorPITA: An Automated Algorithm for the Identification and Analysis of Coronal “EIT Waves” , 2014, 1403.6722.
[3] D. S. Bloomfield,et al. The formation heights of coronal shocks from 2D density and Alfvén speed maps , 2014, 1402.4051.
[4] M. Temmer,et al. Solar Energetic Particles and Associated EIT Disturbances in Solar Cycle 23 , 2014, 1402.1676.
[5] Z. Voros,et al. TWISTED MAGNETIC FLUX TUBES IN THE SOLAR WIND , 2013, 1402.0329.
[6] B. Schmieder,et al. Time Evolution of the Altitude of an Observed Coronal Wave , 2013, 1310.5623.
[7] Y. Moon,et al. THE SOURCE REGIONS OF SOLAR ENERGETIC PARTICLES DETECTED BY WIDELY SEPARATED SPACECRAFT , 2013 .
[8] V. Nakariakov,et al. Fast magnetoacoustic wave trains in magnetic funnels of the solar corona , 2013 .
[9] Jason P. Byrne,et al. Quasiperiodic acceleration of electrons by a plasmoid-driven shock in the solar atmosphere , 2013, Nature Physics.
[10] A. Vourlidas,et al. CME Expansion as the Driver of Metric Type II Shock Emission as Revealed by Self-consistent Analysis of High-Cadence EUV Images and Radio Spectrograms , 2013, 1311.5159.
[11] A. Srivastava,et al. X6.9-CLASS FLARE-INDUCED VERTICAL KINK OSCILLATIONS IN A LARGE-SCALE PLASMA CURTAIN AS OBSERVED BY THE SOLAR DYNAMICS OBSERVATORY/ATMOSPHERIC IMAGING ASSEMBLY , 2013 .
[12] Jie Zhang,et al. GLOBAL CORONAL SEISMOLOGY IN THE EXTENDED SOLAR CORONA THROUGH FAST MAGNETOSONIC WAVES OBSERVED BY STEREO SECCHI COR1 , 2013 .
[13] C. Foullon,et al. First magnetic seismology of the CME reconnection outflow layer in the low corona with 2.5‐D MHD simulations of the Kelvin‐Helmholtz instability , 2013 .
[14] Chengcai Shen,et al. NON-EQUILIBRIUM IONIZATION MODELING OF THE CURRENT SHEET IN A SIMULATED SOLAR ERUPTION , 2013 .
[15] Chang Liu,et al. OBSERVATION OF A MORETON WAVE AND WAVE–FILAMENT INTERACTIONS ASSOCIATED WITH THE RENOWNED X9 FLARE ON 1990 MAY 24 , 2013 .
[16] C. Schrijver,et al. LARGE-SCALE CORONAL PROPAGATING FRONTS IN SOLAR ERUPTIONS AS OBSERVED BY THE ATMOSPHERIC IMAGING ASSEMBLY ON BOARD THE SOLAR DYNAMICS OBSERVATORY—AN ENSEMBLE STUDY , 2013, 1308.3544.
[17] V. Grechnev,et al. Propagation of a fast magnetoacoustic shock wave in the magnetosphere of an active region , 2013 .
[18] M. Aschwanden,et al. The Association of Solar Flares with Coronal Mass Ejections During the Extended Solar Minimum , 2013, 1308.1465.
[19] Z. Qu,et al. Deformation and deceleration of coronal wave , 2013 .
[20] D. S. Bloomfield,et al. Improved methods for determining the kinematics of coronal mass ejections and coronal waves , 2013, 1307.8155.
[21] Y. Liu,et al. Observations of a Quasi-periodic, Fast-Propagating Magnetosonic Wave in Multiple Wavelengths and Its Interaction with Other Magnetic Structures , 2013, 1307.6099.
[22] W. Gan,et al. KELVIN–HELMHOLTZ INSTABILITY OF A CORONAL STREAMER , 2013, 1307.5120.
[23] I. Moortel,et al. First comparison of wave observations from CoMP and AIA/SDO , 2013, 1306.3354.
[24] B. Tan,et al. Distinct propagating fast wave trains associated with flaring energy releases , 2013 .
[25] D. Williams,et al. Measuring the Magnetic-Field Strength of the Quiet Solar Corona Using “EIT Waves” , 2013, 1305.5169.
[26] A. Konovalenko,et al. Radio seismology of the outer solar corona , 2013, 1305.2287.
[27] C. Schrijver,et al. PATHWAYS OF LARGE-SCALE MAGNETIC COUPLINGS BETWEEN SOLAR CORONAL EVENTS , 2013, 1305.0801.
[28] S. Poedts,et al. Numerical Simulations of Dome-Shaped EUV Waves from Different Active-Region Configurations , 2013 .
[29] H. Koskinen,et al. Interpreting Solar EUV Wave Observations from Different Viewing Angles Using an MHD Model , 2013 .
[30] K. Strauch,et al. PROBA2: Mission and Spacecraft Overview , 2013 .
[31] Markus J. Aschwanden,et al. KELVIN–HELMHOLTZ INSTABILITY OF THE CME RECONNECTION OUTFLOW LAYER IN THE LOW CORONA , 2013 .
[32] V. Petrosian,et al. PLASMOID EJECTIONS AND LOOP CONTRACTIONS IN AN ERUPTIVE M7.7 SOLAR FLARE: EVIDENCE OF PARTICLE ACCELERATION AND HEATING IN MAGNETIC RECONNECTION OUTFLOWS , 2013, 1303.3321.
[33] O. Olmedo,et al. STEREO OBSERVATIONS OF FAST MAGNETOSONIC WAVES IN THE EXTENDED SOLAR CORONA ASSOCIATED WITH EIT/EUV WAVES , 2013 .
[34] M. Temmer,et al. THE KELVIN–HELMHOLTZ INSTABILITY AT CORONAL MASS EJECTION BOUNDARIES IN THE SOLAR CORONA: OBSERVATIONS AND 2.5D MHD SIMULATIONS , 2013, 1304.5884.
[35] Carolus J. Schrijver,et al. Automated Temperature and Emission Measure Analysis of Coronal Loops and Active Regions Observed with the Atmospheric Imaging Assembly on the Solar Dynamics Observatory (SDO/AIA) , 2013 .
[36] Bo Yang,et al. AN EXTREME-ULTRAVIOLET WAVE ASSOCIATED WITH A SURGE , 2013 .
[37] M. Karlický,et al. Fast Magnetoacoustic Waves in a Fan Structure Above a Coronal Magnetic Null Point , 2013, Solar Physics.
[38] R. K. Awasthi,et al. Height of Shock Formation in the Solar Corona Inferred from Observations of Type II Radio Bursts and Coronal Mass Ejections , 2013, 1301.0893.
[39] M. Karlick'y,et al. Radio fiber bursts and fast magnetoacoustic wave trains , 2012, 1212.2421.
[40] L. Teriaca,et al. Quiet Sun Explosive Events: Jets, Splashes, and Eruptions , 2012, 1210.7667.
[41] Sung-Hong Park,et al. Multiwavelength Study of a Solar Eruption from AR NOAA 11112: II. Large-Scale Coronal Wave and Loop Oscillation , 2012, 1210.3417.
[42] F. Auchère,et al. The SWAP EUV Imaging Telescope Part I: Instrument Overview and Pre-Flight Testing , 2012, 1208.4631.
[43] M. Temmer,et al. The Wave–Driver System of the Off-Disk Coronal Wave of 17 January 2010 , 2012, 1207.2857.
[44] M. Temmer,et al. Solar TErrestrial Relations Observatory-A (STEREO-A) and PRoject for On-Board Autonomy 2 (PROBA2) Quadrature Observations of Reflections of Three EUV Waves from a Coronal Hole , 2013 .
[45] R. Seguin,et al. The Interface Region Imaging Spectrograph (IRIS) , 2012, 1401.2491.
[46] S. Gosain,et al. DUAL TRIGGER OF TRANSVERSE OSCILLATIONS IN A PROMINENCE BY EUV FAST AND SLOW CORONAL WAVES: SDO/AIA AND STEREO/EUVI OBSERVATIONS , 2012, 1210.6690.
[47] F. Auchère,et al. ON THE ACCURACY OF THE DIFFERENTIAL EMISSION MEASURE DIAGNOSTICS OF SOLAR PLASMAS. APPLICATION TO SDO/AIA. II. MULTITHERMAL PLASMAS , 2012, 1210.2304.
[48] P. Chen,et al. QUADRATURE OBSERVATIONS OF WAVE AND NON-WAVE COMPONENTS AND THEIR DECOUPLING IN AN EXTREME-ULTRAVIOLET WAVE EVENT , 2012, 1208.4539.
[49] Y. Liu,et al. IMAGING OBSERVATIONS OF QUASI-PERIODIC PULSATIONS IN SOLAR FLARE LOOPS WITH SDO/AIA , 2012 .
[50] D. Christian,et al. THE SOURCE OF 3 MINUTE MAGNETOACOUSTIC OSCILLATIONS IN CORONAL FANS , 2012, 1208.3194.
[51] W. Liu,et al. SDO/AIA AND HINODE/EIS OBSERVATIONS OF INTERACTION BETWEEN AN EUV WAVE AND ACTIVE REGION LOOPS , 2012, Proceedings of the International Astronomical Union.
[52] Bo Yang,et al. AN EXTREME ULTRAVIOLET WAVE ASSOCIATED WITH A MICRO-SIGMOID ERUPTION , 2012 .
[53] Bo Yang,et al. A FAST PROPAGATING EXTREME-ULTRAVIOLET WAVE ASSOCIATED WITH A MINI-FILAMENT ERUPTION , 2012 .
[54] V. Nakariakov,et al. Measuring the apparent phase speed of propagating EUV disturbances , 2012 .
[55] O. Olmedo,et al. SECONDARY WAVES AND/OR THE “REFLECTION” FROM AND “TRANSMISSION” THROUGH A CORONAL HOLE OF AN EXTREME ULTRAVIOLET WAVE ASSOCIATED WITH THE 2011 FEBRUARY 15 X2.2 FLARE OBSERVED WITH SDO/AIA AND STEREO/EUVI , 2012, 1206.6137.
[56] J. Heerikhuisen. Preface:Physics of the Heliosphere: A 10 Year Retrospective , 2012 .
[57] Yuandeng Shen,et al. SIMULTANEOUS OBSERVATIONS OF A LARGE-SCALE WAVE EVENT IN THE SOLAR ATMOSPHERE: FROM PHOTOSPHERE TO CORONA , 2012, 1205.3731.
[58] Yuandeng Shen,et al. EVIDENCE FOR THE WAVE NATURE OF AN EXTREME ULTRAVIOLET WAVE OBSERVED BY THE ATMOSPHERIC IMAGING ASSEMBLY ON BOARD THE SOLAR DYNAMICS OBSERVATORY , 2012, 1205.3733.
[59] N. Lugaz,et al. UNDERSTANDING SDO/AIA OBSERVATIONS OF THE 2010 JUNE 13 EUV WAVE EVENT: DIRECT INSIGHT FROM A GLOBAL THERMODYNAMIC MHD SIMULATION , 2012 .
[60] Jun Lin,et al. Numerical experiments of disturbance to the solar atmosphere caused by eruptions , 2012, Science China Physics, Mechanics and Astronomy.
[61] Dehua Yang,et al. An extreme ultraviolet wave associated with a failed eruption observed by the Solar Dynamics Observatory , 2012 .
[62] D. Reames. The Two Sources of Solar Energetic Particles , 2012, 1306.3608.
[63] Yuandeng Shen,et al. OBSERVATIONAL STUDY OF THE QUASI-PERIODIC FAST-PROPAGATING MAGNETOSONIC WAVES AND THE ASSOCIATED FLARE ON 2011 MAY 30 , 2012, 1204.6649.
[64] M. Aschwanden,et al. QUASI-PERIODIC FAST-MODE WAVE TRAINS WITHIN A GLOBAL EUV WAVE AND SEQUENTIAL TRANSVERSE OSCILLATIONS DETECTED BY SDO/AIA , 2012, 1204.5470.
[65] Lindsay Glesener,et al. RADIO IMAGING OF SHOCK-ACCELERATED ELECTRONS ASSOCIATED WITH AN ERUPTING PLASMOID ON 2010 NOVEMBER 3 , 2012 .
[66] J. Davila,et al. GROWING TRANSVERSE OSCILLATIONS OF A MULTISTRANDED LOOP OBSERVED BY SDO/AIA , 2012, 1204.1376.
[67] W. Schmutz,et al. TIME DELAYS IN QUASI-PERIODIC PULSATIONS OBSERVED DURING THE X2.2 SOLAR FLARE ON 2011 FEBRUARY 15 , 2012, 1203.6223.
[68] R. Nightingale,et al. What Are Special About Ground-Level Events? , 2012, 1203.5777.
[69] R. Erdélyi,et al. GENERATION OF QUASI-PERIODIC WAVES AND FLOWS IN THE SOLAR ATMOSPHERE BY OSCILLATORY RECONNECTION , 2012, 1203.6846.
[70] B. Dennis,et al. THE RELATIONSHIP BETWEEN HARD X-RAY PULSE TIMINGS AND THE LOCATIONS OF FOOTPOINT SOURCES DURING SOLAR FLARES , 2012, 1303.6309.
[71] S. Poedts,et al. Dome-shaped EUV Waves from Rotating Active Regions , 2012 .
[72] A. Vourlidas,et al. On the Nature and Genesis of EUV Waves: A Synthesis of Observations from SOHO, STEREO, SDO, and Hinode (Invited Review) , 2012, 1203.1135.
[73] Bo Yang,et al. HOMOLOGOUS EXTREME ULTRAVIOLET WAVES IN THE EMERGING FLUX REGION OBSERVED BY THE SOLAR DYNAMICS OBSERVATORY , 2012 .
[74] J. Ballester,et al. KELVIN–HELMHOLTZ INSTABILITY IN PARTIALLY IONIZED COMPRESSIBLE PLASMAS , 2012, 1202.4274.
[75] T. Berger,et al. FIRST SDO/AIA OBSERVATION OF SOLAR PROMINENCE FORMATION FOLLOWING AN ERUPTION: MAGNETIC DIPS AND SUSTAINED CONDENSATION AND DRAINAGE , 2012, 1201.0811.
[76] K. Shibata,et al. FIRST SIMULTANEOUS OBSERVATION OF AN Hα MORETON WAVE, EUV WAVE, AND FILAMENT/PROMINENCE OSCILLATIONS , 2011, 1112.5915.
[77] W. Liu,et al. SDO/AIA OBSERVATIONS OF SECONDARY WAVES GENERATED BY INTERACTION OF THE 2011 JUNE 7 GLOBAL EUV WAVE WITH SOLAR CORONAL STRUCTURES , 2011, 1111.5202.
[78] O. Podladchikova,et al. Recent Developments of NEMO: Detection of EUV Wave Characteristics , 2011, 1103.4637.
[79] S. Cranmer. Self-Consistent Models of the Solar Wind , 2010, 1007.0954.
[80] W. Liu,et al. Kinematics and amplitude evolution of global coronal extreme ultraviolet waves , 2012 .
[81] N. Raouafi,et al. Computer Vision for the Solar Dynamics Observatory (SDO) , 2012 .
[82] W. Pesnell,et al. The Solar Dynamics Observatory (SDO) , 2012 .
[83] Regina Soufli,et al. Initial Calibration of the Atmospheric Imaging Assembly (AIA) on the Solar Dynamics Observatory (SDO) , 2012 .
[84] R. S. White,et al. Transverse coronal loop oscillations seen in unprecedented detail by AIA/SDO , 2012 .
[85] X. Cheng,et al. INVESTIGATION OF THE FORMATION AND SEPARATION OF AN EXTREME-ULTRAVIOLET WAVE FROM THE EXPANSION OF A CORONAL MASS EJECTION , 2011, 1112.4540.
[86] A. Vourlidas,et al. THE LONGITUDINAL PROPERTIES OF A SOLAR ENERGETIC PARTICLE EVENT INVESTIGATED USING MODERN SOLAR IMAGING , 2011 .
[87] S. Wu,et al. UNCOVERING THE WAVE NATURE OF THE EIT WAVE FOR THE 2010 JANUARY 17 EVENT THROUGH ITS CORRELATION TO THE BACKGROUND MAGNETOSONIC SPEED , 2011 .
[88] M. Temmer,et al. PLASMA DIAGNOSTICS OF AN EIT WAVE OBSERVED BY HINODE/EIS AND SDO/AIA , 2011, 1111.3505.
[89] M. Aschwanden,et al. MODELING SUPER-FAST MAGNETOSONIC WAVES OBSERVED BY SDO IN ACTIVE REGION FUNNELS , 2011 .
[90] Yunchun Jiang,et al. A POSSIBLE DETECTION OF A FAST-MODE EXTREME ULTRAVIOLET WAVE ASSOCIATED WITH A MINI CORONAL MASS EJECTION OBSERVED BY THE SOLAR DYNAMICS OBSERVATORY , 2011 .
[91] P. Gallagher,et al. THE WAVE PROPERTIES OF CORONAL BRIGHT FRONTS OBSERVED USING SDO/AIA , 2011, 1109.5897.
[92] M. Temmer,et al. ANALYSIS OF CHARACTERISTIC PARAMETERS OF LARGE-SCALE CORONAL WAVES OBSERVED BY THE SOLAR-TERRESTRIAL RELATIONS OBSERVATORY/EXTREME ULTRAVIOLET IMAGER , 2011 .
[93] N. Gopalswamy,et al. CORONAL MAGNETIC FIELD MEASUREMENT FROM EUV IMAGES MADE BY THE SOLAR DYNAMICS OBSERVATORY , 2011, 1109.2925.
[94] Carolus J. Schrijver,et al. THE 2011 FEBRUARY 15 X2 FLARE, RIBBONS, CORONAL FRONT, AND MASS EJECTION: INTERPRETING THE THREE-DIMENSIONAL VIEWS FROM THE SOLAR DYNAMICS OBSERVATORY AND STEREO GUIDED BY MAGNETOHYDRODYNAMIC FLUX-ROPE MODELING , 2011 .
[95] A. Veronig,et al. SPECTROSCOPIC OBSERVATIONS OF A CORONAL MORETON WAVE , 2011 .
[96] A. Warmuth,et al. Kinematical evidence for physically different classes of large-scale coronal EUV waves , 2011 .
[97] B. Pontieu,et al. Alfvénic waves with sufficient energy to power the quiet solar corona and fast solar wind , 2011, Nature.
[98] P. Chen,et al. SPECTROSCOPIC ANALYSIS OF INTERACTION BETWEEN AN EXTREME-ULTRAVIOLET IMAGING TELESCOPE WAVE AND A CORONAL UPFLOW REGION , 2011, 1107.5630.
[99] C. Foullon,et al. Damped large amplitude transverse oscillations in an EUV solar prominence, triggered by large-scale transient coronal waves , 2011 .
[100] L. Golub,et al. OBSERVATIONS AND INTERPRETATION OF A LOW CORONAL SHOCK WAVE OBSERVED IN THE EUV BY THE SDO/AIA , 2011, 1106.6056.
[101] K. Shibata,et al. Propagation of Moreton Waves , 2011 .
[102] A. Zhukov. EIT wave observations and modeling in the STEREO era , 2011 .
[103] M. Dietzel,et al. THERMODYNAMICS OF THE SOLAR CORONA AND EVOLUTION OF THE SOLAR MAGNETIC FIELD AS INFERRED FROM THE TOTAL SOLAR ECLIPSE OBSERVATIONS OF 2010 JULY 11 , 2011 .
[104] D. Odstrcil,et al. INTERPRETING THE PROPERTIES OF SOLAR ENERGETIC PARTICLE EVENTS BY USING COMBINED IMAGING AND MODELING OF INTERPLANETARY SHOCKS , 2011 .
[105] Nathan A. Schwadron,et al. OFF-LIMB SOLAR CORONAL WAVEFRONTS FROM SDO/AIA EXTREME-ULTRAVIOLET OBSERVATIONS—IMPLICATIONS FOR PARTICLE PRODUCTION , 2011, 1406.2372.
[106] L. Xia,et al. Streamer Wave Events Observed in Solar Cycle 23 , 2011, 1105.4331.
[107] M. Aschwanden,et al. CORONAL LOOP OSCILLATIONS OBSERVED WITH ATMOSPHERIC IMAGING ASSEMBLY—KINK MODE WITH CROSS-SECTIONAL AND DENSITY OSCILLATIONS , 2011, 1105.2191.
[108] D. S. Bloomfield,et al. Deceleration and dispersion of large-scale coronal bright fronts , 2011, 1104.4334.
[109] G. Rudenko,et al. Coronal Shock Waves, EUV Waves, and Their Relation to CMEs. III. Shock-Associated CME/EUV Wave in an Event with a Two-Component EUV Transient , 2011, 1104.3375.
[110] V. Grechnev,et al. Coronal Shock Waves, EUV Waves, and Their Relation to CMEs. I. Reconciliation of “EIT Waves”, Type II Radio Bursts, and Leading Edges of CMEs , 2011, 1104.3374.
[111] D. J. Anderson,et al. ISOTHERMAL AND MULTITHERMAL ANALYSIS OF CORONAL LOOPS OBSERVED WITH AIA , 2011 .
[112] P. Chen. Coronal Mass Ejections: Models and Their Observational Basis , 2011 .
[113] C. Schrijver,et al. Long‐range magnetic couplings between solar flares and coronal mass ejections observed by SDO and STEREO , 2011 .
[114] A. Afanasyev,et al. Coronal Shock Waves, EUV Waves, and Their Relation to CMEs. II. Modeling MHD Shock Wave Propagation Along the Solar Surface, Using Nonlinear Geometrical Acoustics , 2011, 1104.3620.
[115] Laurent Dolla,et al. CORONAL SEISMOLOGY USING EIT WAVES: ESTIMATION OF THE CORONAL MAGNETIC FIELD STRENGTH IN THE QUIET SUN , 2011 .
[116] P. Chen,et al. FIRST EVIDENCE OF COEXISTING EIT WAVE AND CORONAL MORETON WAVE FROM SDO/AIA OBSERVATIONS , 2011, 1103.0871.
[117] I. Ballai,et al. Magnetoacoustic surface gravity waves at a spherical interface , 2011 .
[118] C. Farrugia,et al. MAGNETIC KELVIN–HELMHOLTZ INSTABILITY AT THE SUN , 2011 .
[119] N. Gopalswamy,et al. Relation Between the 3D-Geometry of the Coronal Wave and Associated CME During the 26 April 2008 Event , 2011, 1103.0196.
[120] N. Lugaz,et al. STUDYING EXTREME ULTRAVIOLET WAVE TRANSIENTS WITH A DIGITAL LABORATORY: DIRECT COMPARISON OF EXTREME ULTRAVIOLET WAVE OBSERVATIONS TO GLOBAL MAGNETOHYDRODYNAMIC SIMULATIONS , 2011 .
[121] M. Temmer,et al. CASE STUDY OF FOUR HOMOLOGOUS LARGE-SCALE CORONAL WAVES OBSERVED ON 2010 APRIL 28 AND 29 , 2011, 1101.5232.
[122] L. Xia,et al. A CORONAL SEISMOLOGICAL STUDY WITH STREAMER WAVES , 2010, 1012.5136.
[123] P. Gallagher,et al. Large-scale Bright Fronts in the Solar Corona: A Review of “EIT waves” , 2010, 1006.0140.
[124] C. J. Wolfson,et al. The Atmospheric Imaging Assembly (AIA) on the Solar Dynamics Observatory (SDO) , 2011 .
[125] B. Thompson,et al. SDO/AIA OBSERVATION OF KELVIN–HELMHOLTZ INSTABILITY IN THE SOLAR CORONA , 2010, 1101.4249.
[126] C. Schrijver,et al. FIRST SDO AIA OBSERVATIONS OF A GLOBAL CORONAL EUV “WAVE”: MULTIPLE COMPONENTS AND “RIPPLES” , 2010, 1201.0815.
[127] A. Vourlidas,et al. THE GENESIS OF AN IMPULSIVE CORONAL MASS EJECTION OBSERVED AT ULTRA-HIGH CADENCE BY AIA ON SDO , 2010, 1010.5234.
[128] L. Ofman. Wave Modeling of the Solar Wind , 2010, Living reviews in solar physics.
[129] T. Berger,et al. Observation of Plasma Instabilities in Quiescent Prominences , 2010 .
[130] Durgesh Tripathi,et al. SDO/AIA response to coronal hole, quiet Sun, active region, and flare plasma , 2010 .
[131] F. Chen,et al. EVIDENCE OF EXPLOSIVE EVAPORATION IN A MICROFLARE OBSERVED BY HINODE/EIS , 2010, 1009.3193.
[132] A. Vourlidas,et al. Toward understanding the early stages of an impulsively accelerated coronal mass ejection - SECCHI observations , 2010, 1008.1171.
[133] T. Kucera,et al. Automated Detection of Oscillating Regions in the Solar Atmosphere , 2010, 1007.0975.
[134] T. Berger,et al. QUIESCENT PROMINENCE DYNAMICS OBSERVED WITH THE HINODE SOLAR OPTICAL TELESCOPE. I. TURBULENT UPFLOW PLUMES , 2010 .
[135] R. Sych,et al. Web-Based Data Processing System for Automated Detection of Oscillations with Applications to the Solar Atmosphere , 2010, 1005.3591.
[136] L. Ofman,et al. GLOBAL SIMULATION OF AN EXTREME ULTRAVIOLET IMAGING TELESCOPE WAVE , 2010 .
[137] Z. Wu,et al. STREAMER WAVES DRIVEN BY CORONAL MASS EJECTIONS , 2010, 1003.3961.
[138] A. Warmuth. Large-scale waves in the solar corona: The continuing debate , 2010 .
[139] C. Schrijver. ERUPTIONS FROM SOLAR EPHEMERAL REGIONS AS AN EXTENSION OF THE SIZE DISTRIBUTION OF CORONAL MASS EJECTIONS , 2009, 0912.0969.
[140] A. Vourlidas,et al. EXTREME ULTRAVIOLET OBSERVATIONS AND ANALYSIS OF MICRO-ERUPTIONS AND THEIR ASSOCIATED CORONAL WAVES , 2010 .
[141] L. Golub,et al. A NEW VIEW OF CORONAL WAVES FROM STEREO , 2009 .
[142] G. Attrill,et al. EIT Waves: A Changing Understanding over a Solar Cycle , 2009 .
[143] M. Karlický,et al. Relationship between wave processes in sunspots and quasi-periodic pulsations in active region flares , 2009, 1005.3594.
[144] G. Attrill,et al. NUMERICAL SIMULATION OF AN EUV CORONAL WAVE BASED ON THE 2009 FEBRUARY 13 CME EVENT OBSERVED BY STEREO , 2009, 0909.3095.
[145] M. Temmer,et al. ANALYTIC MODELING OF THE MORETON WAVE KINEMATICS , 2009, 0908.3746.
[146] M. Aschwanden. 4-D modeling of CME expansion and EUV dimming observed with STEREO/EUVI , 2009, 0908.1913.
[147] B. Thompson,et al. A CATALOG OF CORONAL “EIT WAVE” TRANSIENTS , 2009 .
[148] Joseph M. Davila,et al. On the Tomographic Reconstruction of the 3D Electron Density for the Solar Corona from STEREO COR1 Data , 2009 .
[149] Chengcai Shen,et al. NUMERICAL EXPERIMENTS OF WAVE-LIKE PHENOMENA CAUSED BY THE DISRUPTION OF AN UNSTABLE MAGNETIC CONFIGURATION , 2009, 0906.2677.
[150] V. Nakariakov,et al. Quasi-Periodic Pulsations in Solar Flares , 2009 .
[151] L. Rodriguez,et al. STEREO/SECCHI Observations on 8 December 2007: Evidence Against the Wave Hypothesis of the EIT Wave Origin , 2009 .
[152] A. Vourlidas,et al. What Is the Nature of EUV Waves? First STEREO 3D Observations and Comparison with Theoretical Models , 2009, 0905.2189.
[153] L. Ofman. Progress, Challenges, and Perspectives of the 3D MHD Numerical Modeling of Oscillations in the Solar Corona , 2009 .
[154] P. J. Crockett,et al. Alfvén Waves in the Lower Solar Atmosphere , 2009, Science.
[155] S. Tomczyk,et al. TIME–DISTANCE SEISMOLOGY OF THE SOLAR CORONA WITH CoMP , 2009, 0903.2002.
[156] Carolus J. Schrijver,et al. A CRITICAL ASSESSMENT OF NONLINEAR FORCE-FREE FIELD MODELING OF THE SOLAR CORONA FOR ACTIVE REGION 10953 , 2009, 0902.1007.
[157] C. Delannée. The role of small versus large scale magnetic topologies in global waves , 2009 .
[158] N. Gopalswamy,et al. EUV WAVE REFLECTION FROM A CORONAL HOLE , 2009, The Astrophysical Journal.
[159] D. Innes,et al. Quiet Sun mini-coronal mass ejections activated by supergranular flows , 2008, 0811.2744.
[160] B. Pontieu,et al. A Coherence-Based Approach for Tracking Waves in the Solar Corona , 2008, 0808.2978.
[161] H. Kurokawa,et al. Three Successive and Interacting Shock Waves Generated by a Solar Flare , 2008 .
[162] E. Cliver,et al. Origin of Coronal Shock Waves , 2008 .
[163] D. S. Bloomfield,et al. The Kinematics of a Globally Propagating Disturbance in the Solar Corona , 2008, 0805.2023.
[164] R. Vainio,et al. MHD Modeling of Coronal Large-Amplitude Waves Related to CME Lift-off , 2008 .
[165] M. Temmer,et al. Cylindrical and Spherical Pistons as Drivers of MHD Shocks , 2008 .
[166] E. Christian,et al. The STEREO Mission: An Introduction , 2008 .
[167] N. Gopalswamy,et al. Radio-Quiet Fast and Wide Coronal Mass Ejections , 2008 .
[168] S. Krucker,et al. RHESSI Microflare Statistics. II. X-Ray Imaging, Spectroscopy, and Energy Distributions , 2007, 0712.2544.
[169] R. Erdélyi,et al. Waves and Oscillations in the Solar Atmosphere , 2008 .
[170] G. Aulanier,et al. A New Model for Propagating Parts of EIT Waves: A Current Shell in a CME , 2008 .
[171] R. Erdélyi,et al. Present and Future Observing Trends in Atmospheric Magnetoseismology , 2007 .
[172] N. Raouafi,et al. On the relationship between coronal waves associated with a CME on 5 March 2000 , 2007 .
[173] P. Judge,et al. Alfvén Waves in the Solar Corona , 2007, Science.
[174] D. Gary,et al. Magnetic Field Strength in the Solar Corona from Type II Band Splitting , 2007 .
[175] A. Zhukov,et al. Global Coronal Mass Ejections , 2007 .
[176] J. Stenflo,et al. Are “EIT Waves” Fast-Mode MHD Waves? , 2007, 0704.2828.
[177] I. Ballai. Global Coronal Seismology , 2007, 0704.1398.
[178] A. Pevtsov,et al. Are Moreton Waves Coronal Phenomena? , 2007 .
[179] G. Aulanier,et al. Stationary parts of an EIT and Moreton wave : a topological model , 2007 .
[180] A. M. James,et al. The EUV Imaging Spectrometer for Hinode , 2007 .
[181] L. Ofman. Three-dimensional MHD Model of Wave Activity in a Coronal Active Region , 2007 .
[182] L. Driel-Gesztelyi,et al. Coronal “Wave”: Magnetic Footprint of a Coronal Mass Ejection? , 2007 .
[183] D. Gary,et al. Broadband Quasi-periodic Radio and X-Ray Pulsations in a Solar Flare , 2008, 0804.4037.
[184] Tracking Large-Scale Propagating Coronal Wave Fronts (EIT Waves) using Automated Methods , 2006 .
[185] L. Ofman,et al. Oscillations of Hard X-Ray Flare Emission Observed by RHESSI: Effects of Super-Alfvénic Beams? , 2006 .
[186] M. Temmer,et al. Interaction of a Moreton/EIT Wave and a Coronal Hole , 2006, astro-ph/0604613.
[187] P. Chen. The Relation between EIT Waves and Solar Flares , 2006 .
[188] E. Verwichte,et al. Coronal Waves and Oscillations , 2005, Proceedings of the International Astronomical Union.
[189] P. Chen,et al. Synthesis of CME-Associated Moreton and EIT Wave Features from MHD Simulations , 2005 .
[190] On the Nature of Coronal EIT Waves , 2005 .
[191] E. Cliver,et al. On the Origins of Solar EIT Waves , 2005 .
[192] Barbara June Thompson,et al. Sequential Chromospheric Brightenings beneath a Transequatorial Halo Coronal Mass Ejection , 2005 .
[193] L. Fletcher,et al. X-ray quasi-periodic pulsations in solar flares as magnetohydrodynamic oscillations , 2005 .
[194] A. Warmuth,et al. A model of the Alfvén speed in the solar corona , 2005 .
[195] David Berghmans,et al. Automated Detection Of Eit Waves And Dimmings , 2005 .
[196] A. Warmuth,et al. Broadband Metric-Range Radio Emission Associated with a Moreton/EIT Wave , 2005 .
[197] P. Chen,et al. A Full View of EIT Waves , 2005 .
[198] B. Thompson,et al. High-Cadence Radio Observations of an EIT Wave , 2005 .
[199] S. Krucker,et al. Intensity variation of large solar energetic particle events associated with coronal mass ejections , 2004 .
[200] E. Verwichte,et al. Transverse waves in a post-flare supra-arcade , 2004 .
[201] Craig E. Deforest,et al. High-Frequency Waves Detected in the Solar Atmosphere , 2004 .
[202] F. Auchère,et al. On the nature of EIT waves, EUV dimmings and their link to CMEs , 2004 .
[203] M. Aschwanden. Physics of the Solar Corona. An Introduction , 2004 .
[204] J. Terradas,et al. Loop Density Enhancement by Nonlinear Magnetohydrodynamic Waves , 2004 .
[205] H. Gilbert,et al. Chromospheric Waves Observed in the He I Spectral Line (λ = 10830 Å): A Closer Look , 2004 .
[206] H. Kurokawa,et al. Filament Oscillations and Moreton Waves Associated with EIT Waves , 2004 .
[207] A. Hood,et al. MHD wave propagation in the neighbourhood of a two-dimensional null point , 2004, 0712.1792.
[208] A. Warmuth,et al. A multiwavelength study of solar flare waves. I. Observations and basic properties , 2004 .
[209] V. Nakariakov,et al. Global sausage modes of coronal loops , 2003 .
[210] M. Velli,et al. A Three-dimensional Model of the Solar Wind Incorporating Solar Magnetogram Observations , 2003 .
[211] M. Wills-Davey. Propagating Disturbances in the Lower Solar Corona , 2003 .
[212] L. Harra,et al. Imaging and Spectroscopic Investigations of a Solar Coronal Wave: Properties of the Wave Front and Associated Erupting Material , 2003 .
[213] J. Raymond,et al. Plasma properties above coronal active regions inferred from SOHO/UVCS and radio spectrograph observations , 2003 .
[214] D. Tsiklauri,et al. Line-of-sight effects on observability of kink and sausage modes in coronal structures with imaging telescopes , 2002, astro-ph/0207167.
[215] H. Hudson,et al. Soft X-ray observation of a large-scale coronal wave and its exciter , 2003 .
[216] Francis P. Keenan,et al. An observational study of a magneto-acoustic wave in the solar corona , 2002 .
[217] S. Wu,et al. Evidence of EIT and Moreton Waves in Numerical Simulations , 2002 .
[218] Noriyuki Narukage,et al. Simultaneous Observation of a Moreton Wave on 1997 November 3 in Hα and Soft X-Rays , 2002 .
[219] B. Thompson,et al. A Comparison of CME-Associated Atmospheric Waves Observed in Coronal (Fe XII 195 Å) and Chromospheric (He I 10830 Å) Lines , 2002 .
[220] A. Vourlidas,et al. Solar Phenomena Associated with “EIT Waves” , 2002 .
[221] R. Braǰsa,et al. Flare waves observed in Helium I 10 830 Å - A link between Hα Moreton and EIT waves , 2002 .
[222] M. Temmer,et al. Formation of Coronal Shock Waves , 2013, 1303.2786.
[223] S. Wu,et al. Three‐dimensional numerical simulation of MHD waves observed by the Extreme Ultraviolet Imaging Telescope , 2001 .
[224] A. Warmuth,et al. Evolution of Two EIT/Hα Moreton Waves , 2001 .
[225] V. Nakariakov,et al. Determination of the coronal magnetic field by coronal loop oscillations , 2001 .
[226] Barbara J. Thompson,et al. Interaction of EIT Waves with Coronal Active Regions , 2001 .
[227] Barbara June Thompson,et al. Observations of the 24 September 1997 Coronal Flare Waves , 2001 .
[228] C. J. Wolfson,et al. Sun Earth Connection Coronal and Heliospheric Investigation (SECCHI) , 2000, SPIE Optics + Photonics.
[229] C. Delannée. Another View of the EIT Wave Phenomenon , 2000 .
[230] N. Gopalswamy,et al. Early life of coronal mass ejections , 2000 .
[231] Y.-M. Wang. EIT Waves and Fast-Mode Propagation in the Solar Corona , 2000 .
[232] Steven Tomczyk,et al. A New Precise Measurement of the Coronal Magnetic Field Strength , 2000 .
[233] M. Karlický,et al. Solar flare radio pulsations as a signature of dynamic magnetic reconnection , 2000, astro-ph/0006324.
[234] H. Hudson,et al. Homologous sudden disappearances of transequatorial interconnecting loops in the solar corona , 2000 .
[235] Andreas Klassen,et al. Catalogue of the 1997 SOHO–EIT coronal transient waves and associated type II radio burst spectra , 2000 .
[236] B. Vršnak,et al. Formation Of Coronal Mhd Shock Waves – I. The Basic Mechanism , 2000 .
[237] V. Nakariakov,et al. TRACE observation of damped coronal loop oscillations: implications for coronal heating , 1999, Science.
[238] Carolus J. Schrijver,et al. Coronal Loop Oscillations Observed with the Transition Region and Coronal Explorer , 1999 .
[239] S. Krucker,et al. On the Origin of Impulsive Electron Events Observed at 1 AU , 1999 .
[240] Jean-Pierre Delaboudiniere,et al. SOHO/EIT Observations of the 1997 April 7 Coronal Transient: Possible Evidence of Coronal Moreton Waves , 1999 .
[241] B. Thompson,et al. Injection of ≳10 MeV Protons in Association with a Coronal Moreton Wave , 1999 .
[242] B. Thompson,et al. Observations of a Propagating Disturbance in TRACE , 1999 .
[243] G. Aulanier,et al. Cme Associated with Transequatorial Loops and a Bald Patch Flare , 1999 .
[244] Jay A. Bookbinder,et al. The transition region and coronal explorer , 1998 .
[245] J. B. Gurman,et al. SOHO/EIT observations of an Earth‐directed coronal mass ejection on May 12, 1997 , 1998 .
[246] M. Romoli,et al. Ultraviolet Coronagraph Spectrometer Observations of Density Fluctuations in the Solar Wind , 1997 .
[247] B. Au,et al. Eit Observations of the Extreme Ultraviolet Sun , 1997 .
[248] E. L. Van Dessel,et al. Eit and LASCO Observations of the Initiation of a Coronal Mass Ejection , 1997 .
[249] Stephen M. White,et al. Radio Observations of Gyroresonance Emission from Coronal Magnetic Fields , 1997 .
[250] R. Schwenn. An essay on terminology, myths,- and known facts: Solar transient-flare-CME-driver gas-piston-BDE-magnetic cloud-shock wave-geomagnetic storm , 1996 .
[251] J. Davila,et al. Alfvén wave heating of coronal holes and the relation to the high‐speed solar wind , 1995 .
[252] E. R. Breeveld,et al. The Coronal Diagnostic Spectrometer for the solar and heliospheric observatory , 1995 .
[253] W. Neupert,et al. EIT: Extreme-ultraviolet Imaging Telescope for the SOHO mission , 1995 .
[254] G. Mann. Simple magnetohydrodynamic waves , 1995, Journal of Plasma Physics.
[255] H. Zirin,et al. Neutron and electromagnetic emissions during the 1990 May 24 solar flare , 1994 .
[256] Xuepu Zhao,et al. A coronal magnetic field model with horizontal volume and sheet currents , 1994 .
[257] Gordon J. Hurford,et al. Coronal temperature, density, and magnetic field maps of a solar acitve region using the Owens Valley Solar Array , 1994 .
[258] A. Hundhausen,et al. Coronal mass ejections observed during the Solar Maximum Mission: Latitude distribution and rate of occurrence , 1984 .
[259] A. Benz,et al. On coronal oscillations , 1984 .
[260] H. Washimi,et al. A Triggering of Solar Flare by Magnetosonic Waves in a Neutral Sheet Plasma , 1981 .
[261] J. Ionson. Resonant absorption of Alfvenic surface waves and the heating of solar coronal loops , 1978 .
[262] George L. Withbroe,et al. Mass and Energy Flow in the Solar Chromosphere and Corona , 1977 .
[263] Y. Uchida. Behavior of the flare-produced coronal MHD wavefront and the occurrence of type II radio bursts , 1974 .
[264] Nuffield Advanced Physics team. Waves and oscillations , 1971 .
[265] C. Macris,et al. Physics of the Solar Corona , 1971 .
[266] Y. Uchida. Propagation of hydromagnetic disturbances in the solar corona and Moreton's wave phenomenon , 1968 .
[267] H. Ramsey,et al. Recent Observations of Dynamical Phenomena Associated with Solar Flares , 1960 .