博碩士論文 946203004 詳細資訊




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姓名 賴彥廷(Yen-ting Lai)  查詢紙本館藏   畢業系所 太空科學研究所
論文名稱 磁流體波於地球磁層頂電流片傳播之研究
(Characteristics of magnetohydrodyamic waves propagation in Earth’s magentopause current)
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摘要(中) 地磁脈動(geomagnetic pulsations)為地球磁場之持續突發的擾動現象,其發生與磁流體波於非均勻之太空電漿環境之傳播有著密不可分之關係。本論文應用理想磁流體(Ideal Magnetohydrodynamics; Ideal MHD)方程式探討磁流體波於非均勻電漿之傳播,並發展出一套有系統的模式計算方法分析所推導出之波動方程式。透過計算二階微分波動方程式之特徵值,以及繪製快波、中速波、慢波、以及尖端波等四個特徵速度隨空間的變化情形,可分析各種電流片結構中存在的穩定與不穩定非連續特徵波。本研究分別以壓力均向與非均向 Harris 型式的對稱與非對稱電流片結構進行模式計算與分析。其結果顯示,當電漿壓力具非均向性時,電流片中可存在不穩定的非連續特徵波及共振現象,其發展條件為磁鏡不穩定或救火管不穩定發生之臨界條件。在實際應用方面,本研究利用磁場最小差異量法(Minimum Variance Analysis; MVA)及DeHoffmann-Teller座標分析,分別針對THEMIS人造衛星穿越地球磁層頂電流片之觀測資料,將移除擾動後之背景結構進行計算。結果顯示,兩組磁層頂穿越資料在特定的傳播方向上,皆存在非連續磁流體特徵波。
摘要(英) The persistent burst of magnetic variation in Earth’s space environment as shown in the magnetic field observation is called geomagnetic pulsations. It is well known that geomagnetic pulsations are resulted from the magnetohydrodynamic (MHD) waves propagating in non-uniform space and magnetospheric plasma environment. This study develops a systematic calculation method by solving the eigenvalues of the second-order wave equations derived based on the ideal MHD equations and analyzing the spatial profiles of four MHD characteristic speeds (fast, intermediate, slow and cusp) to obtain the stable and unstable discrete eigenmodes in general planar current sheet structures. Model calculations and analyses for various types of isotropic and anisotropic, symmetric and asymmetric Harris-type current sheets are presented. The results show that in anisotropic plasmas the current sheet may support unstable discrete modes and resonances which occur at the mirror or fire-hose instability thresholds. We have also applied the model calculations to the Earth’s magnetopause current sheet by analyzing two crossing events observed by the THEMIS spacecraft along with the analyses of minimum variance analysis and DeHoffmann-Teller frame and obtained the corresponding discrete eigenmode structures.
關鍵字(中) ★ 磁流體波
★ 電流片
★ 磁層頂
★ 壓力非均向
關鍵字(英) ★ MHD wave
★ current sheet
★ magnetopause
★ pressure anisotropic
論文目次 中文摘要 i
英文摘要 ii
誌謝 iii
目錄 iv
圖目錄 v
第一章  緒論 1
第二章  理論模式 10
2.1 基本方程式 10
2.2 壓力非均向 17
2.3 奇異點分析 19
第三章  模式計算 21
3.1 對稱電流片案例分析 21
3.2 非對稱電流片案例分析 48
第四章  磁層頂應用 62
4.1 分析方法 62
4.2 案例分析 63
第五章 總結 84
參考文獻 87
參考文獻 Asano, Y., R. Nakamura, W. Baumjohann, A. Runov, Z. Vörös, M. Volwerk, T. L. Zhang, A. Balogh, B. Klecker, and H. Rème (2005), How typical are atypical current sheets? Geophys. Res. Lett., 32, L03108, doi:10.1029/2004GL021834.
Belmont, G., F. Reberac, and L. Rezeau (1995), Resonant amplification of magnetosheath MHD fluctuations at the magnetopause, Geophys. Res. Lett., 22, 295.
Chen, L., and A. Hasegawa (1974a), A theory of long-period magnetic pulsations. 1: Steady state excitation of field line resonance, J. Geophys. Res., 79, 1024.
Chen, L., and A. Hasegawa (1974b), A theory of long-period magnetic pulsations. 2: Impulse excitation of surface eigen-modes, J. Geophys. Res., 79, 1033.
De Keyser, J., M. Roth, F. Reberac, L. Rezeau, and G. Belmont (1999), Resonant amplification of MHD waves in realistic subsolar magnetopause configurations, J. Geophys. Res., 104, 2399.
Fruit, G., P. Louarn, A. Tur, and D. Le Quéau (2002), On the propagation of magnetohydrodynamic perturbations in a Harris-type current sheet, 1, Propagation on discrete modes and signal reconstruction, J. Geophys. Res., 107(A11), 1411, doi:10.1029/2001JA009212.
Fruit, G., P. Louarn, A. Tur, and D. Le Quéau (2002), On the propagation of magnetohydrodynamic perturbations in a Harris-type current sheet, 2, Propagation on continuous modes and resonant absorption, J. Geophys. Res., 107(A11), 1412, doi:10.1029/2001JA009215.
Fruit, G., P. Louarn, E. Budnik, J. A. Sauvaud, C. Jacquey, D. Le Quéau, H. Rème, E. Lucek, A. Balogh, and N. Cornilleau-Wehrlin (2004), On the propagation of low-frequency fluctuations in the plasma sheet: 2. Characterization of the MHD eigenmodes and physical implications, J. Geophys. Res., 109, A03217, doi:10.1029/2003JA010229.
Harris, E. G. (1962), On a plasma sheath separating region of oppositely directed magnetic fields, Nuovo Cimento, 23, 115.
Hau, L.-N. and B.U.Ö., Sonnerup (1993), On slow-mode waves in an anisotropic plasma. Geophys. Res. Lett. 20, doi: 10.1029/93GL01706.
Hau, L.-N., and C. A. Lin (1995), Wave propagation in an inhomogeneous anisotropic plasma, Phys. Plasmas 2, 295.
Hau, L.-N., and Y.-T. Lai (2013), General formulation for magnetohydrodynamic wave propagation, fire-hose , and mirror instabilities in Harris-type current sheets, Phys. Plasmas 20, 022103, doi:10.1063/1.4789383.
Hua, L.-N., and B. U. Sonnerup(1990), On slow-mode waves in an anisotropic plasma, Geophys. Res. Lett., 20, 1763, doi:10.1029/93GL01706.
Hau, L.-N., and B. U. Sonnerup (1999), Two-dimensional coherent structures in the magnetopause: Recovery of static equilibria from single-spacecraft data, J. Geophys. Res., 104(A4), 6899–6917, doi:10.1029/1999JA900002.
Hau, L.-N., T.-D. Phan, B. U. Ö. Sonnerup, and G. Paschmann (1993), Double-polytropic closure in the magnetosheath, Geophys. Res. Lett., 20(20), 2255-2258, doi:10.1029/93GL02491.
Hopcraft, K. I., and P. R. Smith (1985), Guided modes in the vicinity of the Earth’s geomagnetic current sheet, Phys. Lett., 113A, 75.
Lee, K.-W., and L.-N. Hau (2008), Characteristics of magnetohydrodynamic waves in Harris-type current sheet with guide magnetic field By, J. Geophys. Res., 113, A12209, doi:10.1029/2008JA013459.
Lin, C. A., L. C. Lee, Y. J. Sun (1991), Observations of Pi 2 pulsations at a very low latitude (L=1.06)station and magnetospheric cavity resonances, J. Geophys. Res., 96, 21,105.
Louarn, P., G. Fruit, E. Budnik, J. A. Sauvaud, C. Jacquey, D. Le Quéau, H. Rème, E. Lucek, and A. Balogh (2004), On the propagation of low-frequency fluctuations in the plasma sheet: 1. Cluster observations and magnetohydrodynamic analysis, J. Geophys. Res., 109, A03216, doi:10.1029/2003JA010228.
McClay, J. F.,and H. R. Radoski (1967), Hydromagnetic propagation in a theta-model geomagnetic tail, J. Geophys. Res., 72, 4525.
McKenzie, J. F. (1970), Hydromagnetic oscillations of the geomagnetic tail and plasma sheet, J. Geophys. Res., 75, 5331.
McKenzie, J. F. (1971), Hydromagnetic wave coupling between the solar wind and the plasma sheet, J. Geophys. Res., 76, 2958.
Mihalov, J. D., C. P. Sonett, and D. S. Colburn (1970), Reconnection and noise in the geomagnetic tail, Cosmic Electrodyn., 1, 178.
Mingalev,O. V., I. V. Mingalev,Kh. V. Malova, L. M.Zelenyi (2007), Numerical simulations of plasma equilibrium in a one-dimensional current sheet with a nonzero normal magnetic field component, Plasma Physics Report, Vol. 33, No. 11, pp.942-955.
Runov, A., Sergeev, V. A., Nakamura, R., Baumjohann, W., Apatenkov, S., Asano, Y., Takada, T., Volwerk, M., Vörös, Z., Zhang, T. L., Sauvaud, J.-A., Rème, H., and Balogh, A. (2006), Local structure of the magnetotail current sheet: 2001 Cluster observations, Ann. Geophys., 24, 247-262, doi:10.5194/angeo-24-247-2006.
Seboldt, W. (1990), Nonlocal analysis of low-frequency waves in the plasm sheet, J. Geophys. Res., 95, 10,471.
Sergeev, V., and et al. (2003), Current sheet flapping motion and structure observed by Cluster, Geophys. Res. Lett., 30, 1327, doi:10.1029/2002GL016500, 6.
Siscoe, G. L. (1969), Resonant compressional waves in thegeomagnetic tail, J. Geophys. Res., 74, 6482.
Smith, J. M., B. Robert, and R. Oliver (1997), Magnetoacoustic wave propagation in current sheets, Astron. Astrophys., 317, 752.
Sonnerup, B. U., and L. J. Cahill Jr. (1967), Magnetopause structure and attitude from Explorer 12 observations, J. Geophys. Res., 72(1), 171–183, doi:10.1029/JZ072i001p00171.
Sonnerup, B. U., I. Papamastorakis, G. Paschmann, and H. Lühr (1987), Magnetopause properties from AMPTE/IRM observations of the convection electric field: Method development, J. Geophys. Res., 92(A11), 12137–12159, doi:10.1029/JA092iA11p12137.
Whang, Y. C. (1977), Magnetospheric magnetic field of Mercury, J. Geophys. Res., 82(7), 1024–1030, doi:10.1029/JA082i007p01024.
指導教授 郝玲妮(Li-ni Hau) 審核日期 2013-7-29
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