利用Ge2Sb2Te5結合布拉格反射器設計具可調式窄頻雙波長之熱輻射發射器

dc.contributor蕭惠心zh_TW
dc.contributor李敏鴻zh_TW
dc.contributorHsiao, Hui-Hsinen_US
dc.contributorLee, Min-Hungen_US
dc.contributor.author何柏緯zh_TW
dc.contributor.authorHo, Po-Weien_US
dc.date.accessioned2023-12-08T07:51:40Z
dc.date.available2028-03-31
dc.date.available2023-12-08T07:51:40Z
dc.date.issued2023
dc.description.abstract本論文旨在利用頂層金屬光柵結合雙層的鍺/二氧化鈦分散式布拉格反射器結合相變化材料之混合堆疊結構來研究中紅外波段(5~15微米)的雙波長窄頻熱輻射發射器。首先,使用光學薄膜厚度公式設計工作在波長為4微米的分散式布拉格反射器結構,接著利用模擬軟體設計金屬光柵於雙層的鍺/二氧化鈦分散式布拉格反射器上,分別分析在入射光極化方向平行於與垂直於光柵周期下的共振模態與頻譜特徵。最後,使用黃光製程來完成樣品的製作,並利用傅里葉轉換紅外光譜量測比對實驗與模擬結果是否吻合。在入射光極化方向平行於光柵周期時,鍺/二氧化鈦分散式布拉格反射器結構同時激發出三種共振模態,包含Gap-cavity mode、MG mode波導模態與Hybridized Gap-cavity mode。而在TM極化下,則激發出侷域在頂層鍺層的波導模態、侷域在底層鍺層的波導模態與侷域表面電漿子共振。藉由模擬計算,我們系統性分析這些共振模態的光學特性,包含光柵結構與上層GST膜厚對這些共振模態的頻譜響應、改變入射光角度的影響等,並製作出一系列具不同金屬光柵線寬與上層GST厚度的樣品來驗證理論結果,最後成功設計出具結構與極化可調性、低角度相依性之雙波長窄頻可調式的熱輻射發射器,未來期望應用於提高分子感測應用之靈敏度與準確性。zh_TW
dc.description.abstractWe aim to study mid-infrared (5~15μm) thermal emitters based on the combination of a phase change material and a gold grating structure on top of a double-paired germanium/titanium dioxide (Ge/TiO2) distributed Bragg reflector (DBR). First, we used the optical thinfilm thickness formula to calculate the thickness of the distributed Bragg reflector working at the wavelength of 4 μm. Then, the simulation software was implemented to design the grating structure on top of the double-layer Ge/TiO2 DBR and analyze different resonant modes and spectral profiles under transverse electric (TE) and transverse magnetic (TM) polarizations. Finally, the samples were fabricated by a standard photolithography process and the Fourier-transform infrared spectroscopy was utilized to characterize the optical properties of samples. Under TE polarization, three resonance modes are simultaneously excited, including gap-cavity mode, the middle-guided mode (MG mode), and the hybridized gap-cavity mode. On the other hand, three resonant modes including top-guided mode (TG mode), the bottom-guided mode (BG mode), and the localized surface plasmon (LSPs) are excited for TM polarization. We systematically analyzed the optical properties of these resonant modes via simulations, including the effects of the grating structure, the thickness of top GST cavity, and the oblique incident angle on the resonant wavelengths. Then, a serious of samples with different stripe widths and top GST thicknesses were fabricated to validate the theoretical results. Finally, polarization-tunable narrowband, small angular dependent thermal emitters with additional degree of freedom in adjusting the spectral position of each mode were realized, which is promising for enhancing the accuracy in discrimination of molecular fingerprint.en_US
dc.description.sponsorship光電工程研究所zh_TW
dc.identifier60877027H-43047
dc.identifier.urihttps://etds.lib.ntnu.edu.tw/thesis/detail/f9b380eb584bf695a4bc39c39cf7e787/
dc.identifier.urihttp://rportal.lib.ntnu.edu.tw/handle/20.500.12235/120656
dc.language中文
dc.subject多波長zh_TW
dc.subject窄頻熱發射zh_TW
dc.subject中紅外zh_TW
dc.subject相變化材料zh_TW
dc.subject間隙共振腔模態zh_TW
dc.subjectMultiwavelengthen_US
dc.subjectnarrowband thermal emissionen_US
dc.subjectmid-infrareden_US
dc.subjectphase change materialen_US
dc.subjectgap-cavity modeen_US
dc.title利用Ge2Sb2Te5結合布拉格反射器設計具可調式窄頻雙波長之熱輻射發射器zh_TW
dc.titleDesign of tunable plasmonic thermal emitter using Ge2Sb2Te5 combined with Distributed Bragg reflectoren_US
dc.typeetd

Files

Collections