張存續 教授
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近五年內(2007---迄今)之研究成果 A.SCI期刊論文 (Link to Recent Publications)[1] A. Bhaskar, T. H. Chang*, H. Y. Chang, and S. Y. Cheng, “Low-temperature crystallization of sol-gel derived PZT thin films by 2.45GHz microwave energy,” Thin Solid Films, 515, 2891 (2007). (IF: 1.935, ▲:13) [2] T. H. Chang*, C. T. Fan, K. F. Pao, S. H. Chen, and K. R. Chu, “Stability and Tunability of the Gyrotron Backward-Wave Oscillator”, Appl. Phys. Lett. 90, 191501 (2007). (IF: 3.841, ▲:13) [3] A. Bhaskar, H. Y. Chang, T. H. Chang*, and S. Y. Cheng, “Effect of microwave annealing temperatures on lead zirconate titanate thin films,” Nanotechnology, 18, 395704 (2007). (IF: 3.652, ▲:10) [4] C. T. Fan, T. H. Chang*, K. F. Pao, S. H. Chen, and K. R. Chu, “Stable, high efficient gyrotron backward-wave oscillator”, Phys. Plasmas, 14, 093102 (2007).(IF: 2.320, ▲:2) [5] K. F. Pao, C. T. Fan, T. H. Chang, C. C. Chiu, and K. R. Chu, “Selective suppression of high order axial modes of the gyrotron backward-wave oscillator”, Phys. Plasmas, 14, 093301 (2007). (IF: 2.320, ▲:2) [6] N. C. Chen, C. F. Yu, and T. H. Chang*, “A TE21 second harmonic gyrotron backward-wave oscillator with slotted structure”, Phys. Plasmas, 14, 123105 (2007).(IF: 2.320, ▲:1) [7] T. H. Chang*, C. F. Yu, C. L. Hung, Y. S. Yeh, M. C. Msiao, and Y. Y. Shin, “W-band TE01 gyrotron backward-wave oscillator with distributed loss”, Phys. Plasmas15, 073105 (2008). (IF: 2.320, ▲:7) [8] T. H. Chang*, C. S. Lee, C. N. Wu, and C. F. Yu, “Exciting circular TEmn modes at low terahertz region”, Appl. Phys. Lett. 93, 111503 (2008). (IF: 3.841, ▲:9) [9] A. Bhaskar, T. H. Chang*, H. Y. Chang, and S. Y. Cheng, “Pb(Zr0.53Ti0.47)O3thin films with different thickness obtained at low-temperature by microwave irradiation”, Applied Surface Science 255, 3795 (2009). (IF: 1.795, ▲:3) [10] T. H. Chang*, T. Idehara, I. Ogawa, L. Agusu, C. C. Chiu, and S. Kobayashi, “Frequency tunable gyrotron using backward-wave components”, J. Appl. Phys. 105, 063304 (2009). (IF: 2.079, ▲:15) [11] S. C. Fong, C. Y. Wang, T. H. Chang*,and T. S. Chin, Crystallization of amorphous Si film with SiC susceptor by microwave annealing”, Appl. Phys. Lett. 94, 102104 (2009).(IF: 3.841, ▲:4) [12] T. H. Chang*, and B. R. Yu, “High-Power Millimeter-Wave Rotary Joint”, Rev. Sci. Instrum. 80, 034701 (2009). (IF: 1.601, ▲:3) [13] N. C. Chen, C. F. Yu, C. P. Yuan, and T. H. Chang*, “A mode-selective circuit for TE01Gyrotron Backward-wave Oscillator with wide-tuning range”, Appl. Phys. Lett. 94, 101501 (2009). (IF: 3.841, ▲:11) [14] C. P. Yuan, T. H. Chang*, N. C. Chen, and Y. S. Yeh, "Magnetron injection gun for a broadband gyrotron backward-wave oscillator", Phys. Plasmas, 16, 073109 (2009). (IF: 2.320, ▲:1) [15] H. Y. Yao and T. H. Chang*, “Effect of high-order modes on tunneling characteristics",Progress In Electromagnetics Research, PIER, 101, 291-306, 2010. (IF: 3.745, ▲:2) [16] T. H. Chang*, B. Y. Shew, C. Y. Wu, and N. C. Chen, "X-ray microfabrication and measurement of a terahertz mode converter", Rev. Sci. Instrum. 81, 054701 (2010).(IF: 1.601, ▲:0) [17] N. C. Chen, T. H. Chang*, C. P. Yuan, T. Idehara and I. Ogawa, “Theoretical investigation of a high efficiency and broadband sub-terahertz gyrotron", Appl. Phys. Lett.96, 161501 (2010). (IF: 3.841, ▲:5) [18] T. H. Chang*, C. H. Li, C. N. Wu, and C. F. Yu, " Generating pure circular TEmnmodes using Y-type power dividers", IEEE Trans. Microwave Theory Tech. 58, 1543 (2010). (IF: 2.025, ▲:2) [19] Y. S. Yeh, T. H. Chang, C. T. Fan, C. L. Hung, J. N. Jhou, J. M. Huang, J. L. Shiao, Z. Q. Wu, and C. C. Chiu, "Nonlinear oscillation behavior of a driven gyrotron backward-wave oscillator", Phys. Plasmas 17, 113112 (2010). (IF: 2.320, ▲:0) [20] C. P. Yuan, S. Y. Lin, T. H. Chang*, and B. Y. Shew, " Millimeter-wave Bragg diffraction of micro-fabricated crystal structures", American Journal of Physics, 79, 619 (2011). (IF: 0.791, ▲:1) [21] S. C. Fong, H. W. Chao, T. H. Chang, H. J. Leu, I. S. Tsai, S. Y. Cheng, C. Y. Wang, [22] C. P. Yuan and T. H. Chang* Modal analysis for metal-stub photonic band gap structures in a parallel-plate waveguide", Progress In Electromagnetics Research, PIER 119, 345 (2011). (IF: 3.745) [23] C. L. Hung, T. H. Chang, and Y. S. Yeh, "Effects of tapering structures on the [24] T. H. Chang*, H. W. Chao, F. H. Syu, W. Y. Chiang, S. C. Fong, and T. S. Chin, "Efficient heating with a controlled microwave field", Rev. Sci. Instrum. 82, 124703 (2011). (IF: 1.601) [25] H. Y. Yao and T. H. Chang*, “Experimental and theoretical studies of a broadband superluminality in Fabry-Perot interferometer" Progress In Electromagnetics Research, PIER 122, 1 (2012). (IF: 3.745) |
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審核中或即將投稿(Manuscripts under review or to be submitted) | ||||||||||||||||||||||||||||
[26] H. Y. Yao, N. C. Chen, and T. H. Chang*, “Group delay decomposition for analysis of positive superluminality and negative group delay," submitted to New Journal of Physics. [27] T. H. Chang*, N. C. Chen, H. W. Chao, J. C. Lin, C. C. Huang, and C. C. Chen "Generating large area uniform microwave field with distributed inputs," submitted to Physics of Plasmas. [28] N. C. Chen, T. H. Chang*, and C. Y. Yang "Broadband excitation of coaxial TE01 mode for multi-channel system at low terahertz," submitted to Applied Physics Letters. [29] K. R. Chu, L. R. Barnett, W. Y. Chiang, T. H. Chang, H. Y. Chang, and S. Y. Cheng, “A quasi-optical system for ultra rapid microwave heating,” to be submitted to Applied Physics Letters. B.中文專刊 (Chinese Journal papers): [1] 張存續, 鄭復興, 與楊滋德, “真空爐焊接技術探討”, 真空科技, 第12卷, 第4期, p.36, (1999). [2] 洪健倫, 張存續, 朱國瑞, 戴涪, 與呂康威, “應用於大面積微波電漿源之輻射共振腔原理探討”, 真空科技, 第13卷, 第3期, p.25, (2000). [3] 張存續, “高速數位電路之電源完整性”, 電子月刊, 二月號, pp. 186-193 (2003). (每月精選) [4] 朱國瑞, 柏賴德, 張存續, 張宏宜, 姜惟元, 戴伶潔, 余青芳, 寇崇善, 鄭世裕, “一個應用微波處理材料的新工具”, 工業材料, 十二月號, pp.77-80 (2004). [5] 張存續, “微波與材料之頻率響應與反應特性”, 工業材料, 十二月號, pp.81-87 (2004). [6] 朱國瑞, 張存續, 陳仕宏, “電子迴旋脈射---原理與應用”, 物理雙月刊, 四月號(2006) [7] 張存續, “高功率可調頻太赫茲波源---電子磁旋脈射”, 物理雙月刊, 四月號(2009) |
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C. 專利 (Patents): | ||||||||||||||||||||||||||||
[1] 戴涪, 許覺良, 朱國瑞, 馮嘉鳴, 張存續, 呂康威, “圓極化循迴器”,台灣, 專利證書號: 125309. [2] 戴涪, 許覺良, 朱國瑞, 李學志, 彭國源, 賈漢榮, 賀克勤, 張存續, ”300FECR電漿機台設備”,台灣, 專利證書號:137744. [3] 張存續, ”功率分配系統之共振頻率之調離方法”,台灣,專利證書號:91136048. [4] T. H. Chang, “Method of Detuning Resonant Frequencies of a Power Distribution System,” US 7,102,466 [5] 張存續, ”藉由外部耦合電阻性終結器降低功率分配系統中之開關雜訊之方法,” 台灣,專利證書號:004359. [6] T. H. Chang and J. Chen, “Method of Reducing Switching Noise in a Power Distribution System by External Coupled Resistive Terminations,” US 6,903,634. [7] 余青芳, 張存續, “極化高次模電磁波耦合器及耦合方法”,台灣, 專利證書號:I267231. [8] T. H. Chang, C. F. Yu, and C.T. Fan, ”Novel polarization controllable TE21 mode converter,” US 7394335. [9] 張存續, 余青芳, “成比例配置分流裝置之高次模電磁波耦合器及耦合方法”,台灣, 專利證書號:I267226. [10] T. H. Chang and C. F. Yu, “High Performance TE01 mode converter,” US 7,396,011. [11] 張宏宜,張存續,連曼均,鄭世裕,盧佳卉,方文志, ”可調式材料處理裝置”,台灣,專利證書號:I260816. [12] 朱國瑞, 柏賴德, 張存續, 張宏宜, 姜惟元, 余青芳, 戴伶潔, 鄭世裕, 寇崇善, “近光學式材料處理裝置”,台灣, 專利證書號:I252063. [13] L. R. Barnett, K. R. Chu, T. H. Chang, H. Y. Chang, W.Y. Chiang, C. F. Yu, L. C. Tai, S.Y. Cheng, C.S. Kou, “Quasi-optical material treatment apparatus,” US 7,381,932. [14] 張存續, 余博仁, “模式轉換器及具有此模式轉換器之微波旋轉接頭”,台灣, 申請號:097144842. [15] T. H. Chang and B. R. Yu, “Mode Converter and Microwave Rotary Joint with the Mode Converter,” US patent pending, Application No. 12/468,332.已獲證 [16] 張存續, 林柏宏, 黃重均, “微波提供裝置以及微波電漿系統”,台灣, 申請號:098143125。 [17] T. H. Chang, P. H. Lin, C. C. Huang, "Microwave supplying apparatus and microwave plasma system", Application No. 12/646981. [18] 陳乃慶、張存續,“可模式選擇之磁旋管之作用結構”,台灣,申請號:098124992。 [19] N. C. Chen and T. H, Chang, “Mode-Selective Interactive Structure for Gyrotrons”, US patent pending, Application No. 12/558,935. [20] 張存續、陳乃慶、吳俊潭,“相互隔離之雙模轉換器及其應用”,台灣,申請號:099107265。 [21] T. H, Chang, N. C. Chen, and C. T. Wu, “Isolated dual-mode converter and application thereof”, US patent pending, Application No. 12/822,446. [22] 張存續、袁景濱, “微波繞射系統”, 台灣,申請號099128235。 [23] 張存續、袁景濱, “微波繞射系統”, 大陸,申請號201010544470.6。 [24] T. H, Chang, C. P. Yuan, “Microwave diffraction system”, US patent pending, Application No. 12/909,326. [25] 張士欽,張存續,邱子桓,陳宗漢, "奈米碳管複合式環氧樹脂黏著劑及其使用方法", 台灣,申請號099138068。 [26] 張士欽,張存續,邱子桓,陳宗漢, "奈米碳管複合式環氧樹脂黏著劑及其使用方法", 大陸,申請號201010591966.9。 [27] 金重勳, 張存續, 方世杰, 趙賢文, “非晶矽薄膜之微波照射結晶方法”, 台灣,申請號。 [28] T. S. Chin, T. H. Chang, S. J. Fang, H. W. Chao, “Method of crystallization of amorphous silicon using microwave irradiation”, US patent pending. [29] 陳乃慶, 張存續, 楊慶源, “同軸TE01模多通道微波旋轉耦合器”, 台灣,申請中。 [30] N. C. Chen, T. H. Chang, C. Y. Yang, “Coaxial TE01 multichannel microwave rotary joint”, US patent pending. [31] 張存續, 陳乃慶, 蔡育超, 黃重均,“高功率寬頻微波窗”, 台灣, 申請中。 [32] T. H. Chang, N. C. Chen, Y. C. Tsai, C. C. Huang, "High-power, broadband microwave window", US patent pending. [33] 張存續, 金重勳, 趙賢文, 方世杰, “多槽式微波共振器”, 台灣,申請中。 [34]T. H. Chang, T. S. Chin, H. W. Chao, S. J. Fang, “Multi-slot microwave resonator”, US patent pending. |
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