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六、研究時域兆赫波頻譜量測鑭鈣錳氧薄膜的高頻響應特性

VI、 參考文獻

1. T.Elsaesser, et al., (ed) Ultrafast Phenomena vol 12 (Berlin:Springer)(2001).

2. J. Shah, Ultrafast Spectroscopy of Semiconductors and Semiconductor Nanostructures (New York: Springer) (1999).

3. D. S. Chemla et al., Nature 411, 549 (2001).

4. R. Huber, et al., Nature 414, 286 (2001).

5. Eesley et al., Phys. Rev. Lett. 51, 2140 (1983).

6. W. S. Fann, et al., Phys. Rev. Lett. 68, 2834 (1992).

7. R. H. M. Groeneveld, et al., Phys. Rev. B 51, 11433 (1995).

8. R. W. Schoenlein, et al., Phys. Rev. Lett. 58, 1680 (1987).

9. R. D. Averitt1 and A. J. Taylor, J. Phys.: Condens. Matter 14, R1357–R1390 (2002).

10. C. W. Lou , M. H. Chen , S. P.Chen , K. H. Wu , J. Y. Juang , J. –Y. Lin , T. M. Uen , and Y. S. Gou :“Spatial Dichotomy of Quasiparticle Dynamics in YBa2Cu3O7-δ Superconducting Thin Films by Polarized Femtosecond Spectroscopy “ , in press, Physical Review B (2006).

11. C. W. Lou , P. T. Shih , Y. -J.Chen , M. H. Chen , K. H. Wu , J. Y. Juang , J. –Y.

Lin , T. M. Uen , and Y. S. Gou :“Spatially-resolved relaxation Dynamics of Photoinduced Quasiparticle in Underdoped YBa2Cu3O7-δ”, Physical Review B 72, 092506 (2005).

12. P. I. Lin, K. H. Wu, J. Y. Juang, J.-Y. Lin, T. M. Uen, and Y. S. Gou,

“Generation of THz Radiation and Its Application in the Studies of Electrodynamics of High-Tc Superconductors in THz Regime”, 2005 Japan-Taiwan Symposium on Superconductive Electronics, Sapporo, Japan, Feb. 2005.

13. P. I. Lin, C.W. Luo, H. S. Liu, S. F. Chen, K. H. Wu, J. Y. Juang, J.-Y. Lin, T. M.

Uen, and Y. S. Gou: “On the origin of photogenerated terahertz radiation from current-biased superconducting YBCO thin films”, J. Appl. Phys. 95, 8045 (2004) 14. C.W. Luo, M.H. Chen, K.H. Wu, J.Y. Juang, T.M. Uen, J.-Y. Lin, and Y.S. Gou,

“Photoexcited carrier relaxation in a-axis oriented YBa2Cu3O7 thin films measured by femtosecond time-resolved spectroscopy”, Physica C 388-389, 477 (2003).

15. C. W. Lou , M. H. Chen , S. P.Chen , K. H. Wu , J. Y. Juang , J. –Y. Lin , T. M.

Uen , and Y. S. Gou : “Spatial Symmetry of Superconducting Gap

inYBa2Cu3O7-δObatined from Femtosecond Spectroscopy” , Physical Review B 68, 220508(R) (2003).

16. C.W. Luo, M.H. Chen, C.C. Chiu, S.P. Chen, K.H. Wu, J.-Y. Lin, J.Y. Juang, T.M.

Uen, and Y.S. Gou, “Anisotropic photoexcited carrier dynamics in (100)-, (001)-, and (110)-oriented YBCO films by polarized ultrafast optical spectroscopy”, J.

Low Temp. Phys. 131, 767 (2003).

17. P.I. Lin, K.H. Wu, J.Y. Juang, J.-Y. Lin, T.M. Uen, and Y.S. Gou, “Free-space electro-optic sampling of terahertz radiation from optically excited

superconducting YBa2Cu3O7 thin films”, IEEE Trans. Appl. Supercond. 13, 20(2003).

18. P.I. Lin, C.W. Luo, H.S. Liu, K.H. Wu, J.Y. Juang, T.M. Uen, and Y.S. Gou,

“Bipolar photogenerated terahertz radiation in biased photoconductive switches”, Physica B 329-333, 1651 (2003).

19. K. H. Wu, C. W. Luo, S. J. Liu, M. H. Chen, J. Y. Juang, T. M. Uen, J.-Y. Lin, and Y. S. Gou, “Polarization-dependent X-ray absorption spectroscopy on in-plane aligned YBa2Cu3O7 thin films”, Physica C 388-389, 435 (2003).

20. P.I. Lin, S.F. Chen, K.H. Wu, J.Y. Juang, T.M. Uen, and Y.S. Gou,

“Characteristics of photogenerated bipolar terahertz radiation in biased photoconductive switches”, Jpn. J. Appl. Phys. 41, L1158 (2002).

21. K.H. Wu, C.W. Luo, J.Y. Juang, T.M. Uen, and Y.S. Gou, “Femtosecond

Spectroscopy Studies of Ultrafast Dynamics in PrxY1-xBa2Cu3O7 and YBa2Cu3O7-δ

Thin Films at Different Temperatures”, Chin. J. Phys. 38, 279 (2000).

22. K.H. Wu, C.W. Luo, J.Y. Juang, T.M. Uen, and Y.S. Gou, “Ultrafast dynamics in Pr-doped and oxygen-deficient YBCO films by femtosecond spectroscopy”, Physica B 284-288, 2099 (2000).

23. G. R. Lin, W. C. Chen, S. C. Chou, C. S. Chang, K. H. Wu, and C. L. Pan,

“Charactization and ultrafast Optical Properties of Arsenic-ion-implanted Semi-insulating GaAs”, IEEE Jour. Quantum Electronics 34, pp.1740-1748 (1998).

24. K. H. Wu, M. C. Hsieh, S. P. Chen, S. C. Chao, J. Y. Juang, T. M. Uen, Y. S. Gou, T. Y. Tseng, C. M. Fu, J. M. Chen, and R. G. Liu, “Preparation and electronic properties of YBa2Cu30x films with controlled oxygen stoichiometries”, Jpn. J.

Appl. Phys. 37, 4346 (1998).

25. C. W. Luo, M. H. Chen, C. C. Chiu, K. H. Wu, J. Y. Juang, T. M. Uen, J.-Y Lin, and Y. S. Gou, “Anisotropic characteristics of in-plane aligned a-axis

YBa2Cu3O7-δ thin films”, J. Low Temp. Phys., 131, 545 (2003).

26. C. W. Luo, M. H. Chen, S. J. Liu, K. H. Wu, J. Y. Juang, T. M. Uen, J.-Y Lin, J.-M. Chen, and Y. S. Gou, “Anisotropic electronic structure of in-plane aligned a-axis YBa2Cu3O7-δ thin films”, J. Appl. Phys. 94, 3648 (2003).

27. K.H. Wu, P.I. Lin, C.C. Hsieh, S.J. Liu, J.Y. Juang, T.M. Uen, J.Y. Lin, and Y.S.

Gou, “Superconducting YBCO films grown on TiO2 buffer layers derived from various processes”, Physica C 363, 119 (2001).

28. C.C. Hsieh, K.H. Wu, J.Y. Juang, T.M. Uen, J.-Y. Lin, and Y.S. Gou,

“Monophasic TiO2 films deposited on SrTiO3(100) by pulsed laser ablation”, J.

Appl. Phys. 92, 2518 (2002).

29. S. J. Liu, J.M. Chen, J.Y. Juang, K.H. Wu, T.M. Uen, Y.S. Gou, and J.Y. Lin,

“ Soft x-ray absorption spectroscopy studies of (110) YBCO films”, J. Appl. Phys.

93, 2834 (2003).

30. S. F. Chen, P.I. Lin, J.Y. Juang, T.M. Uen, K.H. Wu, Y.S. Gou, and J.Y. Lin,

“Metallic percolation in La0.67Ca0.33MnO3 thin films”, Appl. Phys. Lett. 82, 1242 (2003).

31. S.J. Liu, J.Y. Juang, K.H. Wu, T.M. Uen, Y.S. Gou, and J.Y. Lin, “Transport properties of CrO2(110) films grown on TiO2 buffered Si substrates by chemical vapor deposition”, Appl. Phys. Lett. 80, 4202 (2002).

32. P.I. Lin, C.W. Liu, C.C. Hsieh, K.H. Wu, J.Y. Juang, T.M. Uen, J.Y. Lin, Y.S.

Gou, “Characteristics of YBCO thin films deposited on substrates buffered by various TiO2 layers”, Jpn. J. Appl. Phys. 40, L377 (2001).

33. S. J. Liu, J.M. Chen, J.Y. Juang, K.H. Wu, T.M. Uen, Y.S. Gou, and J.Y. Lin,

“ Soft x-ray absorption spectroscopy studies of (110) YBCO films”, J. Appl. Phys.

93, 2834 (2003).

34. W. J. Chang, J. Y. Tsai, H.-T. Jeng, J.-Y. Lin, Kenneth Y.-J. Zhang, H. L. Liu, J.

M. Lee, J. M. Chen, K. H. Wu, T. M. Uen, Y. S. Gou, and J. Y. Juang: ” Electronic structure and transport properties of La0.7Ce0.3MnO3”, Physical Review B 72, 132410 (2005).

35. W.J. Chang, C.C. Hsieh, J.Y. Juang, K. H. Wu, T.M. Uen, Y.S. Gou, C.H. Hsu, and J.-Y. Lin, “Effects of compressive epitaxial strain on the magneto-transport properties of single-phase electron-doped La0.7Ce0.3MnO3 films”, J. Appl. Phys. 96, 4357 (2004).

36. K.H.Wu, 超快雷射光電技術應用於超導物理與元件之研究, 行政院國家科學 委員會專題研究計畫成果報告, NSC 91-2112-M-009-045,

(2001/8/1-2003/7/31).

37. A. A. Kordyuk et al., LOW TEMP PHYS 32, 298, 2006 38. L. S. Lai et al., Physica C 432, 99 (2005).

39. T. Ohnishi et al., J. Mater. Res. 19, 977 (2004).

40. A. Kursumovic et al., Supercond. Tech. & Sci. 17, 1215 (2004) 41. M. Norman, Science 303, 1985 (2004).]

42. N. Mannella et al., Nature 438, 474 (2005 43. K. M. Shen et al., Science 307, 901 (2005).]

44. X. J. Zhou et al., Phys. Rev. Lett. 92, 187001 (2004) 45. T. Yoshida et al., Phys. Rev. Lett. 91, 027001 (2003).

46. T. Hanaguri, et al., Nature 430, 1001 (2004).

47. A. Rothwarf, B. N. Taylor, Phys. Rev. Lett. 19, 27, (1967).

48. V. V. Kabanov et al., Phys. Rev. Lett. 95, 147002 (2005).

49. G. P. Segre et al., Phys. Rev. Lett. 88, 137001 (2002).

50. N. Gedik et al., Phys. Rev. Lett. 95, 117005 (2005).

51. M.L. Schneider et al., Eur. Phys. J. B 36, 327–334 (2003).

52. V. V. Kabanov, J. Demsar, B. Podobnik, and D. Mihailovic: Phys. Rev. B. 59, 1497 (1999).

53. J. Demsar et al., Phys. Rev. Lett 82,4918 (1999).

54. J. L. Tallon et al., Phys. Rev. B 51, 12911 (1995).

55. S. Jin et al., Science 264 413 (1994).

56. G. H. Jonker et al., Physica 16 337 (1950).

57. J. Volgeret al., Physica 20 49 (1954).

58. P. W. Anderson et al., Phys. Rev. 100 67 (1955).

59. K. Kubo et al., J. Phys. Soc. Japan 33 21 (1972).

60. A. J. Millis et al., Phys. Rev. B 54 5405 (1996).

61. H. Roder et al., Phys. Rev. Lett. 76 1356 (1996).

62. A. J. Millis et al., Nature 392 147 (1998).

63. D. Lim et al., Phys. Rev. B 71, 134403 (2005).

64. Y. H. Ren et al., J. Chem. Phys. 121, 436 (2004).

65. Y. H. Ren et al., Phys. Rev. B 64, 144401(2001).

66. A. I. Lobad et al., Appl. Phys. Lett. 77, .4025(2000).

67. A. I. Lobad et al.,Chem. Phys. 251, 227 (2000).

68. Y. G. Zhao et al., Phys. Rev. Lett. 81, 1310 (1998).

69. W. J. Chang et al., Phys. Rev. B 72, 132410 (2005).

70. W. J. Chang et al., J. Appl. Phys. 96, 4357 (2004).

71. M. Khazan, Dissertation, Fachbereich Physik der Universität Hamburg, 2002 72. H. N˘emec1 et al., www.lncmp.org/fichiers/IRMMW 2001.pdf.

73. H. Yoneda, et al., Conference Proceedings - Lasers and Electro-Optics Society Annual Meeting-LEOS, 2, 644 (2001).

74. M.A. Khazan, “Time-domain terahertz spectroscopy and its application to the study of high-Tc superconductor thin films”, Ph. D. dissertation, Hamburg University, Hamburg, Germany (2002).

75. M. Born, and E. Wolf, “Principle of Optics” (MacMillan, New York, 1964).

76. N. Kida, et al., Phys. Rev B 62, R11965 (2000).

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