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Harmonics in the Spectra of Solar Radio Disturbances

JP Wild, JD Murray and WC Rowe
7(3) pp.439 - 459


130 articles found in Crossref database.

Sweepers, Communications and Solar Activity
Gerson N. C., Gossard W. H.
IEEE Transactions on Radio Frequency Interference. 1963 5(1). p.86
Advances in Electronics and Electron Physics Volume 7 (1955)
Wild J.P.
OBSERVATIONS AND INTERPRETATION OF A LOW CORONAL SHOCK WAVE OBSERVED IN THE EUV BY THE SDO/AIA
Ma Suli, Raymond John C., Golub Leon, Lin Jun, Chen Huadong, Grigis Paolo, Testa Paola, Long David
The Astrophysical Journal. 2011 738(2). p.160
Coherent Synchrotron Deceleration and the Emission of Type II and Type III Solar Radio Bursts
KUCKES A. F., SUDAN R. N.
Nature. 1969 223(5210). p.1048
A self‐consistent mechanism for electron cyclotron maser emission and its application to type III solar radio bursts
Chen L., Wu D. J., Zhao G. Q., Tang J. F.
Journal of Geophysical Research: Space Physics. 2017 122(1). p.35
Simulations of coronal type III solar radio bursts: 3. Effects of beam and coronal parameters
Li Bo, Cairns Iver H., Robinson Peter A.
Journal of Geophysical Research: Space Physics. 2009 114(A2).
Stereoscopic direction finding analysis of a Type III solar radio burst: Evidence for emission at 2fp−
Gurnett D. A., Baumback M. M., Rosenbauer H.
Journal of Geophysical Research: Space Physics. 1978 83(A2). p.616
Discrepancy between the Low-frequency Cutoffs of Type III Radio Bursts Based on Simultaneous Observations by WIND and PSP
Ma 马 Bing 兵, Chen 陈 Ling 玲, Wu 吴 Dejin 德金, Pulupa Marc, Bale Stuart D.
The Astrophysical Journal Letters. 2022 932(2). p.L26
Spectral Characteristics of Type II Solar Radio Bursts
STURROCK P. A.
Nature. 1961 192(4797). p.58
Space Weather and Coronal Mass Ejections (2014)
Howard Tim
A review of solar type III radio bursts
Reid Hamish Andrew Sinclair, Ratcliffe Heather
Research in Astronomy and Astrophysics. 2014 14(7). p.773
Energetic particle propagation in the inner heliosphere as deduced from low‐frequency (<100 kHz) observations of type III radio bursts
Cane H. V., Erickson W. C.
Journal of Geophysical Research: Space Physics. 2003 108(A5).
Highlighting the History of Astronomy in the Asia-Pacific Region (2011)
Stewart Ronald, Orchiston Wayne, Slee Bruce
Highlighting the History of Astronomy in the Asia-Pacific Region (2011)
Stewart Ronald, Wendt Harry, Orchiston Wayne, Slee Bruce
Some aspects of type II bursts
Roberts J. A.
Symposium - International Astronomical Union. 1959 9 p.194
Solar System Radio Astronomy (1965)
Warwick James W.
Shocks in the Very Local Interstellar Medium
Mostafavi P., Burlaga L. F., Cairns I. H., Fuselier S. A., Fraternale F., Gurnett D. A., Kim T. K., Kurth W. S., Pogorelov N. V., Provornikova E., Richardson J. D., Turner D. L., Zank G. P.
Space Science Reviews. 2022 218(4).
RADIO SIGNATURES OF CORONAL-MASS-EJECTION-STREAMER INTERACTION AND SOURCE DIAGNOSTICS OF TYPE II RADIO BURST
Feng S. W., Chen Y., Kong X. L., Li G., Song H. Q., Feng X. S., Liu Ying
The Astrophysical Journal. 2012 753(1). p.21
The Solar Spectrum (1965)
Maxwell A.
The Radio Spectrum of Solar Activity
Maxwell A., Swarup G., Thompson A.
Proceedings of the IRE. 1958 46(1). p.142
Flare-associated bursts at 18 Mc/s
Warwick Constance, Warwick J. W.
Symposium - International Astronomical Union. 1959 9 p.203
Properties of Type-II Radio Bursts in Relation to Magnetic Complexity of the Solar Active Regions
Bhatt Tusharkumar N., Jain Rajmal, Gopalswamy N., Dwivedi Anjali, Singh Anshupriya, Awasthi Arun Kumar, Yashiro Seiji, Guevara Day Walter R., Chamadia Pramod K., Patel Krunal, Chaudhari Sneha
Solar Physics. 2024 299(5).
40. Commission de Ramio-Astronomie
Pawsey J. L.
Transactions of the International Astronomical Union. 1957 9 p.563
Automatic Solar Radio Burst Type II and III Image Processing Tracking by Using CALLISTO System
2017 International Conference on Industrial Engineering, Management Science and Application (ICIMSA) (2017)
Hamidi Z. S., Shariff N. N. M.
The frequency ratio and time delay of solar radio emissions with fundamental and harmonic components
Chen Xingyao, Kontar Eduard P, Clarkson Daniel L, Chrysaphi Nicolina
Monthly Notices of the Royal Astronomical Society. 2023 520(2). p.3117
The Culgoora solar radio observatory
Labrum N. R.
Solar Physics. 1972 27(2). p.496
The Solar Spectrum (1965)
Maxwell A.
First- and Second-Order Perturbations of Plasmas with Cauchy Equilibrium Distributions
Liemohn H. B., Scarf F. L.
The Physics of Fluids. 1963 6(4). p.490
Positions of the Fundamental and Harmonic Sources of a Type II Solar Burst
Dulk G. A.
Publications of the Astronomical Society of Australia. 1970 1(7). p.308
The Radioheliograph and the Radio Astronomy Programme of the Culgoora Observatory
Wild J.P.
Publications of the Astronomical Society of Australia. 1967 1(2). p.38
The High Latitude Heliosphere (1995)
Gurnett Donald A.
Astronomy from satellites and space vehicles
Goldberg Leo
Journal of Geophysical Research. 1959 64(11). p.1765
HELIOS photometer measurements of in-situ density enhancements
Jackson B.V.
Advances in Space Research. 1986 6(6). p.307
A Guide to the Solar Corona (1966)
Billings Donald E.
PLASMA EMISSION BY COUNTER-STREAMING ELECTRON BEAMS
Ziebell L. F., Petruzzellis L. T., Yoon P. H., Gaelzer R., Pavan J.
The Astrophysical Journal. 2016 818(1). p.61
The Theory of Solar Radio Bursts: Can it be understood by the Non-Expert?
Melrose D. B.
Publications of the Astronomical Society of Australia. 1981 4(2). p.139
Solar disturbances producing type II radio bursts
Giovanelli R. G.
Il Nuovo Cimento. 1959 13(S1). p.299
Classical Kinetic Theory of Weakly Turbulent Nonlinear Plasma Processes (2019)
Yoon Peter H.
Particle Acceleration and Trapping in Solar Flares (1987)
Melrose D. B.
Fundamental and harmonic radiation in solar type III bursts
Smerd S. F.
Solar Physics. 1976 46(2). p.493
Solar System Radio Astronomy (1965)
Elgaröy Öystein
(1970)
SMITH D.F.
Harmonic ratios of inverted-U type III bursts
Stewart R. T.
Solar Physics. 1974 39(2). p.451
Radio Astronomy at Long Wavelengths (2000)
Wu C. S., Li Y., Yoon Peter H.
Fundamental and harmonic radiation in type III solar radio bursts
Robinson P. A., Cairns I. H.
Solar Physics. 1994 154(2). p.335
Simulations of coronal type III solar radio bursts: 2. Dynamic spectrum for typical parameters
Li Bo, Cairns Iver H., Robinson Peter A.
Journal of Geophysical Research: Space Physics. 2008 113(A6).
List of recent publications
Scott W. E.
Journal of Geophysical Research. 1955 60(1). p.121
Gauribidanur Low-Frequency Solar Spectrograph
Kishore P., Kathiravan C., Ramesh R., Rajalingam M., Barve Indrajit V.
Solar Physics. 2014 289(10). p.3995
A New Spectral Characteristic in Solar Radio Emission
MAXWELL A., SWARUP G.
Nature. 1958 181(4601). p.36
PLASMA EMISSION BY NONLINEAR ELECTROMAGNETIC PROCESSES
Ziebell L. F., Yoon P. H., Petruzzellis L. T., Gaelzer R., Pavan J.
The Astrophysical Journal. 2015 806(2). p.237
Sixty-five years of solar radioastronomy: flares, coronal mass ejections and Sun–Earth connection
Pick Monique, Vilmer Nicole
The Astronomy and Astrophysics Review. 2008 16(1-2). p.1
Evidence for a Peak in the Number of Isolated Type III Bursts prior to Large Solar Flares
Jackson B. V., Sheridan K. V.
Publications of the Astronomical Society of Australia. 1979 3(6). p.383
Coherent emission mechanisms in astrophysical plasmas
Melrose D. B.
Reviews of Modern Plasma Physics. 2017 1(1).
A New Scenario for Type III Solar Radio Emission
Wu C. S., Yoon Peter H., Li Y.
The Astrophysical Journal. 2000 540(1). p.572
A Swept-Frequency Interferometer for the Study of High-Intensity Solar Radiation at Meter Wavelengths
Wild J., Sheridan K.
Proceedings of the IRE. 1958 46(1). p.160
A Guide to the Solar Corona (1966)
Billings Donald E.
Under the Radar (2010)
Making Waves (2013)
Goss W. M.
Type III solar radio noise bursts at hectometer wavelengths
Hartz T.R.
Planetary and Space Science. 1969 17(2). p.267
Physics of the Sun (1985)
Goldman Martin V., Smith Dean F.
On the origin of type III fundamental
Eremin A. B., Zaitsev V. V.
Solar Physics. 1985 102(1-2). p.99
Towards a theory for type III solar radio bursts
Smith D. F.
Solar Physics. 1970 15(1). p.202
Acceleration of solar cosmic rays and the fine spectral structure of type II radio bursts
Tsap Yu. T., Isaeva E. A.
Cosmic Research. 2013 51(2). p.108
Observatories and Telescopes of Modern Times (2016)
Making Waves (2013)
Goss W. M.
Coronal Mass Ejections (2011)
Howard Timothy
Highlighting the History of Astronomy in the Asia-Pacific Region (2011)
Stewart Ronald, Orchiston Wayne, Slee Bruce
A Foreshock Model for Interstellar Shocks of Solar Origin: Voyager 1 and 2 Observations
Gurnett D. A., Kurth W. S., Stone E. C., Cummings A. C., Heikkila B., Lal N., Krimigis S. M., Decker R. B., Ness N. F., Burlaga L. F.
The Astronomical Journal. 2021 161(1). p.11
Radio Emission of the Sun and Planets (1970)
Direction-finding measurements of type III radio bursts out of the ecliptic plane
Baumback Mark M., Kurth William S., Gurnett Donald A.
Solar Physics. 1976 48(2). p.361
THE FORMATION AND EARLY EVOLUTION OF A CORONAL MASS EJECTION AND ITS ASSOCIATED SHOCK WAVE ON 2014 JANUARY 8
Wan (万霖丰) Linfeng, Cheng Xin, Shi Tong, Su Wei, Ding M. D.
The Astrophysical Journal. 2016 826(2). p.174
PROMINENCE ACTIVATION BY CORONAL FAST MODE SHOCK
Takahashi Takuya, Asai Ayumi, Shibata Kazunari
The Astrophysical Journal. 2015 801(1). p.37
Observation of coronal mass ejections in association with sun spot number and solar flares
Gour Preetam Singh, Singh Nitin P, Soni Shiva, Saini Sapan Mohan
IOP Conference Series: Materials Science and Engineering. 2021 1120(1). p.012020
Band Splitting in Type II Solar Radio Bursts
McLean D. J.
Publications of the Astronomical Society of Australia. 1967 1(2). p.47
Coherent synchrotron deceleration and the emission of type II and III solar radio bursts
Kuckes A. F., Sudan R. N.
Solar Physics. 1971 17(1). p.194
Multiwavelength observations of a metric type-II event
Alissandrakis C. E., Nindos A., Patsourakos S., Hillaris A.
Astronomy & Astrophysics. 2021 654 p.A112
Simulations of coronal type III solar radio bursts: 1. Simulation model
Li Bo, Cairns Iver H., Robinson Peter A.
Journal of Geophysical Research: Space Physics. 2008 113(A6).
A Dynamic Spectrum Analyzer for Solar Studies
Goodman J., Lebenbaum M.
Proceedings of the IRE. 1958 46(1). p.132
The prevalence of second harmonic radiation in type III bursts observed at kilometric wavelengths
Haddock F. T., Alvarez Hector
Solar Physics. 1973 29(1). p.183
Waves and plasma emissions excited by ring-beam energetic electrons interacting with weakly magnetized plasmas
Zhang Zilong, Chen Yao, Li Chuanyang, Ni Sulan, Ning Hao, Li Yaokun, Li TangMu, Kong Xiangliang
Physics of Plasmas. 2023 30(12).
Generalized weak turbulence theory
Yoon Peter H.
Physics of Plasmas. 2000 7(12). p.4858
Position Measurements of a Harmonic Type II Solar Burst
Riddle A. C.
Publications of the Astronomical Society of Australia. 1970 1(7). p.310
Radio Observations of Coronal Mass Ejection Initiation and Development in the Low Solar Corona
Carley Eoin P., Vilmer Nicole, Vourlidas Angelos
Frontiers in Astronomy and Space Sciences. 2020 7
Plasma emission: A review
Melrose D. B.
Solar Physics. 1987 111(1). p.89
On the origin of terrestrial particles from solar flares
Ward W.H.
Journal of Atmospheric and Terrestrial Physics. 1959 14(3-4). p.296
Properties of Decameter IIIb–III Pairs
Melnik V. N., Brazhenko A. I., Frantsuzenko A. V., Dorovskyy V. V., Rucker H. O.
Solar Physics. 2018 293(2).
The Sun, the Solar Wind, and the Heliosphere (2011)
Vilmer Nicole
Radio Detection of a Rapid Disturbance Launched by a Solar Flare
White S. M., Janardhan P., Kundu M. R.
The Astrophysical Journal. 2000 533(2). p.L167
An Intense Flare–CME Event in 2015: Propagation and Interaction Effects Between the Sun and Earth’s Orbit
Johri Abhishek, Manoharan P. K.
Solar Physics. 2016 291(5). p.1433
Radio Evidence on the Particle Distribution Functions in the Corona following Flares
Dulk G. A., Melrose D. B., Smerd S. F.
Publications of the Astronomical Society of Australia. 1978 3(4). p.243
7. Radio Observations of Solar Flares
Wild J. P.
Transactions of the International Astronomical Union. 1957 9 p.661
Particle-in-cell and Weak Turbulence Simulations of Plasma Emission
Lee Sang-Yun, Ziebell L. F., Yoon P. H., Gaelzer R., Lee E. S.
The Astrophysical Journal. 2019 871(1). p.74
Simulation of Plasma Emission in Magnetized Plasmas
Lee Sang-Yun, Yoon Peter H., Lee Ensang, Tu Weichao
The Astrophysical Journal. 2022 924(1). p.36
X-ray observations of a large-scale solar coronal shock wave
Khan J. I., Aurass H.
Astronomy & Astrophysics. 2002 383(3). p.1018
Large-Scale Interplanetary Magnetic Field Configuration Revealed by Solar Radio Bursts
Reiner M. J., Fainberg J., Stone R. G.
Science. 1995 270(5235). p.461
Homologous Bursts of Spectral Type II
Stewart R. T., Hardwick B.
Publications of the Astronomical Society of Australia. 1969 1(5). p.185
Plasma emission induced by ring-distributed energetic electrons in overdense plasmas
Chen Yao, Zhang Zilong, Ni Sulan, Ning Hao, Li Chuanyang, Li Yaokun
Physics of Plasmas. 2022 29(11).
Coronal Disturbances (1974)
Lin R. P.
Solar Radio Spectro-polarimeter (50–500 MHz). I. Design, Development, and Characterization of a Cross-polarized, Log-periodic Dipole Antenna
Kumari Anshu, Gireesh G. V. S., Kathiravan C., Mugundhan V., Barve Indrajit V., Ramesh R., Monstein C.
The Astrophysical Journal. 2023 958(2). p.181
Towards a theory for type III solar radio bursts
Smith Dean F.
Solar Physics. 1974 34(2). p.393
Coronal Conditions for the Occurrence of Type II Radio Bursts
Kouloumvakos Athanasios, Rouillard Alexis, Warmuth Alexander, Magdalenic Jasmina, Jebaraj Immanuel. C., Mann Gottfried, Vainio Rami, Monstein Christian
The Astrophysical Journal. 2021 913(2). p.99
A Guide to the Solar Corona (1966)
Billings Donald E.
Characteristics of interplanetary type II radio emission and the relationship to shock and plasma properties
Lengyel‐Frey D., Stone R. G.
Journal of Geophysical Research: Space Physics. 1989 94(A1). p.159
ORIGIN OF CORONAL SHOCK WAVES ASSOCIATED WITH SLOW CORONAL MASS EJECTIONS
Magdalenić J., Marqué C., Zhukov A. N., Vršnak B., Žic T.
The Astrophysical Journal. 2010 718(1). p.266
History of Astronomy in Australia: Big-Impact Astronomy from World War II until the Lunar Landing (1945–1969)
Graham Alister, Kenyon Katherine, Bull Lochlan, Lokuge Don Visura, Kuhlmann Kazuki
Galaxies. 2021 9(2). p.24
Evidence for Strong and Weak Turbulence Processes in the Source Region of a Local Type III Radio Burst
Thejappa G., MacDowall R. J.
The Astrophysical Journal. 1998 498(1). p.465
Direct observations of low-energy solar electrons associated with a type III solar radio burst
Frank L. A., Gurnett D. A.
Solar Physics. 1972 27(2). p.446
Solar Photospheric Magnetic Fields, Coronal Mass Ejections, and Type II Radio Bursts in Cycles 23 and 24
Bilenko I. A.
Astronomy Reports. 2022 66(7). p.579
Advances in Electronics and Electron Physics Volume 20 (1965)
Boischot A., Denisse J.F.
Kilometric Type II Radio Emissions in Wind/WAVES TNR Data and Association with Interplanetary Structures Near Earth
Manini Franco, Cremades Hebe, López Fernando M., Nieves-Chinchilla Teresa
Solar Physics. 2023 298(12).
Evidence for electron excitation of type III radio burst emission
Alvarez H., Haddock F., Lin R. P.
Solar Physics. 1972 26(2). p.468
Simulated Dynamic Spectra: A Group of Coronal Type III Bursts
Li Bo
The Astrophysical Journal. 2007 666(2). p.L129
The spectrum of radio-star scintillations and the nature of irregularities in the ionosphere
Wild J.P., Roberts J.A.
Journal of Atmospheric and Terrestrial Physics. 1956 8(1-2). p.55
Statistics of Low Frequency Cutoffs for Type III Radio Bursts Observed by Parker Solar Probe during Its Encounters 1–5
Ma Bing, Chen Ling, Wu Dejin, Bale Stuart D.
The Astrophysical Journal Letters. 2021 913(1). p.L1
Fine Spectral Structure of Solar Radio Storms
McConnell D.
Publications of the Astronomical Society of Australia. 1980 4(1). p.64
A Catalog of Metric Type II Radio Bursts Detected by RSTN During Solar Cycle 24
Lawrance Bendict, Devi Pooja, Chandra Ramesh, Miteva Rositsa
Solar Physics. 2024 299(6).
Electron plasma oscillations associated with type III radio emissions and solar electrons
Gurnett D. A., Frank L. A.
Solar Physics. 1975 45(2). p.477
Astrophysikalische Bemerkungen zur Entstehung der kosmischen Ultrastrahlung
Uns�ld A.
Zeitschrift f�r Physik. 1955 141(1-2). p.70
Two Successive Type II Radio Bursts Associated With B-Class Flares and Slow CMEs
Ma Suli, Chen Huadong
Frontiers in Astronomy and Space Sciences. 2020 7
Electro-optic spectrograph for radio astronomy
Cole T.W.
Optics Technology. 1968 1(1). p.31
Optical observations of solar disturbances causing type II radio bursts
Giovanelli R. G., Roberts J. A.
Symposium - International Astronomical Union. 1959 9 p.201
Generation of Type III Solar Radio Bursts in the Low Corona by Direct Amplification
Wu C. S., Wang C. B., Yoon Peter H., Zheng H. N., Wang S.
The Astrophysical Journal. 2002 575(2). p.1094
The transverse motions of the sources of solar radio bursts
Wild J. P., Sheridan K. V., Trent G. H.
Symposium - International Astronomical Union. 1959 9 p.176
Non-linear effects in electron plasmas
Sturrock P A
Journal of Nuclear Energy. Part C, Plasma Physics, Accelerators, Thermonuclear Research. 1961 2(1). p.158
The emission mechanisms for solar radio bursts
Melrose D.B.
Space Science Reviews. 1980 26(1). p.3
Type III solar radio bursts and the fundamental-harmonic hypothesis
Rosenberg Hans
Solar Physics. 1975 42(1). p.247
The Flash Phase of Solar Flares: Satellite Observations of Electrons
Lin R. P.
Symposium - International Astronomical Union. 1974 57 p.201
Fundamental plasma emission involving ion sound waves
Cairns Iver H.
Journal of Plasma Physics. 1987 38(2). p.169
59. Spectral observations of solar activity at metre wave-lengths
Wild J. P.
Symposium - International Astronomical Union. 1957 4 p.321
Heliospheric radio emissions
Gurnett Donald A.
Space Science Reviews. 1995 72(1-2). p.243
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