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Journal articleGaland M, Yelle RV, Coates AJ, et al., 2006, , GEOPHYSICAL RESEARCH LETTERS, Vol: 33, ISSN: 0094-8276
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- Citations: 63
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Journal articleBradshaw SJ, Cargill PJ, 2006, , ASTRONOMY & ASTROPHYSICS, Vol: 458, Pages: 987-995, ISSN: 0004-6361
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- Citations: 84
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Journal articleMuller-Wodarg ICF, Forbes JM, Keating GM, 2006, , PLANETARY AND SPACE SCIENCE, Vol: 54, Pages: 1415-1424, ISSN: 0032-0633
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- Citations: 9
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Journal articleZhang TL, Baumjohann W, Delva M, et al., 2006, , PLANETARY AND SPACE SCIENCE, Vol: 54, Pages: 1336-1343, ISSN: 0032-0633
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- Citations: 231
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Journal articleBrindley HE, Russell JE, 2006, , REMOTE SENSING OF ENVIRONMENT, Vol: 104, Pages: 426-446, ISSN: 0034-4257
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- Citations: 29
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Journal articleKokorowski M, Sample JG, Holzworth RH, et al., 2006, , GEOPHYSICAL RESEARCH LETTERS, Vol: 33, ISSN: 0094-8276
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- Citations: 29
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Journal articleRees A, Balogh A, Horbury TS, 2006, , JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, Vol: 111, ISSN: 2169-9380
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- Citations: 12
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Journal articleNeubauer FM, Backes H, Dougherty MK, et al., 2006, , JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, Vol: 111, ISSN: 2169-9380
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- Citations: 84
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Conference paperCarr CM, Horbury TS, Balogh A, et al., 2006,
A magnetometer for the Solar Orbiter Mission
, ISSN: 0379-6566The magnetometer is a key instrument to the Solar Orbiter mission. The magnetic field is a fundamental parameter in any plasma: a precise and accurate measurement of the field is essential for understanding almost all aspects of plasma dynamics such as shocks and stream-stream interactions. Many of Solar Orbiter's mission goals are focussed around the links between the Sun and space. A combination of in situ measurements by the magnetometer, remote measurements of solar magnetic fields and global modelling is required to determine this link and hence how the Sun affects interplanetary space. The magnetic field is typically one of the most precisely measured plasma parameters and is therefore the most commonly used measurement for studies of waves, turbulence and other small scale phenomena. It is also related to the coronal magnetic field which cannot be measured directly. Accurate knowledge of the magnetic field is essential for the calculation of fundamental plasma parameters such as the plasma beta, Alfven speed and gyroperiod. We describe here the objectives and context of magnetic field measurements on Solar Orbiter and an instrument that fulfils those objectives as defined by the scientific requirements for the mission.
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Conference paperHorbury T, 2006,
Turbulence in the Solar wind - Prospects for Solar Orbiter
, ISSN: 0379-6566Solar Orbiter will, among many other advances, provide us with unique measurements of waves and turbulence in the inner heliosphere. We discuss expectations of conditions over the orbit of the spacecraft that are relevant to turbulence studies, such as solar wind speeds and Alfven Mach number, based on earlier Helios data. We describe some of the topics within solar wind turbulence research that the mission will address, as well as some of the challenges that will be faced.
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Journal articleMatteini L, Landi S, Hellinger P, et al., 2006, , Journal of Geophysical Research: Space Physics, Vol: 111, ISSN: 0148-0227
<jats:p>We report a study of the properties of the parallel proton fire hose instability comparing the results obtained by the linear analysis, from one鈥恉imensional (1鈥怐) standard hybrid simulations and 1鈥怐 hybrid expanding box simulations. The three different approaches converge toward the same instability threshold condition which is in good agreement with in situ observations, suggesting that such instability is relevant in the solar wind context. We investigate also the effect of the wave鈥恜article interactions on shaping the proton distribution function and on the evolution of the spectrum of the magnetic fluctuations during the expansion. We find that the resonant interaction can provide the proton distribution function to depart from the bi鈥怣axwellian form.</jats:p>
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Journal articleMoullard O, Burgess D, Horbury TS, et al., 2006, , JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, Vol: 111, ISSN: 2169-9380
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- Citations: 52
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Journal articleCattaneo MBB, Marcucci MF, Retino A, et al., 2006, , JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, Vol: 111, ISSN: 2169-9380
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- Citations: 15
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Journal articleOsborne DR, Vassilicos JC, Sung K, et al., 2006, , PHYSICAL REVIEW E, Vol: 74, ISSN: 2470-0045
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- Citations: 30
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Journal articleGaland M, Chakrabarti S, 2006, , JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, Vol: 68, Pages: 1488-1501, ISSN: 1364-6826
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- Citations: 24
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Journal articleBlyth E, Evans J, Finch J, et al., 2006,
Spatial variability of the English agricultural landscape and its effect on evaporation
, Agricultural and Forest Meteorology, Vol: 138, Pages: 19-28The variability of leaf area index, canopy height and albedo is measured across an agricultural landscape in lowland Britain. The dependency of the variability with spatial sampling is quantified and the sensitivity of modelled evaporation to the variability is assessed. From this study, it appears that the leaf area index can display significant variability between fields of growing crops as their plant and harvest times may differ by the order of a month. In addition the albedo variability is high. Both these quantities have an influence on the resulting evaporation (between 1% and 40% depending on assumptions) and need to be accounted for. Although the crop height varies considerably, it does not have a big impact on evaporation (less than 4%).
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Journal articleHull AJ, Larson DE, Wilber M, et al., 2006, , GEOPHYSICAL RESEARCH LETTERS, Vol: 33, ISSN: 0094-8276
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- Citations: 39
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Journal articleKrueger H, Graps AL, Hamilton DP, et al., 2006, , PLANETARY AND SPACE SCIENCE, Vol: 54, Pages: 919-931, ISSN: 0032-0633
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- Citations: 23
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Journal articleJaritz N, Windholz L, Zaheer U, et al., 2006, , PHYSICA SCRIPTA, Vol: 74, Pages: 211-217, ISSN: 0031-8949
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- Citations: 6
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Journal articleRoth I, Bale SD, 2006, , JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, Vol: 111, ISSN: 2169-9380
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- Citations: 2
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Journal articleKellogg PJ, Bale SD, Mozer FS, et al., 2006, , ASTROPHYSICAL JOURNAL, Vol: 645, Pages: 704-710, ISSN: 0004-637X
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- Citations: 22
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Journal articleXiao CJ, Wang XG, Pu ZY, et al., 2006, , NATURE PHYSICS, Vol: 2, Pages: 478-483, ISSN: 1745-2473
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- Citations: 123
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Journal articleBrindley HE, Ignatov A, 2006, , REMOTE SENSING OF ENVIRONMENT, Vol: 102, Pages: 344-363, ISSN: 0034-4257
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- Citations: 32
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Journal articleGosling JT, Eriksson S, Skoug RM, et al., 2006, , ASTROPHYSICAL JOURNAL, Vol: 644, Pages: 613-621, ISSN: 0004-637X
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- Citations: 75
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Journal articleMueller-Wodarg ICF, 2006, , SCIENCE, Vol: 312, Pages: 1319-1320, ISSN: 0036-8075
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Journal articleLeisner JS, Russell CT, Dougherty MK, et al., 2006, , GEOPHYSICAL RESEARCH LETTERS, Vol: 33, ISSN: 0094-8276
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- Citations: 71
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Journal articleYelle RV, Borggren N, de la Haye V, et al., 2006, , ICARUS, Vol: 182, Pages: 567-576, ISSN: 0019-1035
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- Citations: 88
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Journal articleBaker DN, Klecker B, Schwartz SJ, et al., 2006,
Foreword
, ßr, Vol: 124, Pages: D7+-D7+ -
Journal articleCarcill PJ, Vlahos L, Turkmani R, et al., 2006, , SPACE SCIENCE REVIEWS, Vol: 124, Pages: 249-259, ISSN: 0038-6308
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- Citations: 19
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Journal articleSchwartz SJ, 2006, , ßr, Vol: 124, Pages: 333-344-333-344
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