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Organic solid-state tri-wavelength lasing was demonstrated from dye-doped holographic polymer-dispersed liquid crystal (HPDLC) distributed feedback (DFB) laser with semiconducting polymer poly[-methoxy-5-(2′-ethyl-hexyloxy)-1,4-phenylene-vinylene] (MEH-PPV) and laser dye [4-(dicyanomethylene)-2-methyl-6-(p-dimethylaminostyryl)-4H-pyran] (DCM) by a one-step holography technique, which centered at 605.5 nm, 611.9 nm, and 671.1 nm. The temperature-dependence tuning range for the tri-wavelength dye-doped HPDLC DFB laser was as high as 8 nm. The lasing emission from the 9th order HPDLC DFB laser with MEH-PPV as active medium was also investigated, which showed excellent s-polarization characterization. The diffraction order is 9th and 8th for the dual-wavelength lasing with DCM as the active medium. The results of this work provide a method for constructing the compact and cost-effective all solid-state smart laser systems, which may find application in scientific and applied research where multi-wavelength radiation is required.

عنوان انگلیسی: Organic Solid-State Tri-Wavelength Lasing from Holographic Polymer-Dispersed Liquid Crystal and a Distributed Feedback Laser with a Doped Laser Dye and a Semiconducting Polymer Film
سال نشر: ۲۰۱۷
نویسنده: Minghuan Liu,Yonggang Liu,Zenghui Peng,Shaoxin Wang,Qidong Wang,Quanquan Mu,Zhaoliang Cao,Li Xuan
تعداد صفحه فارسی: ۱ – تعداد صفحه انگلیسی: ۱۰
دانشگاه: State Key Laboratory of Applied Optics, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China 2 University of Chinese Academy of Sciences, Beijing 100049, China
نشریه: Process Safety and Environmental Protection
کیفیت ترجمه: ترجمه پلاس

چکیده

لیزر تابی حالت‌جامد ارگانیک با سه طول‌موج از لیزر بازخورد توزیع‌شده (DFB) از کریستال مایع هالوگرافی با پلیمر پخش‌شده (HPDLC) و تخدیر رنگ‌شده با پلیمر نیمه‌رسانا (MEH-PPV) و رنگ لیزر (DCM) و توسط روش هالوگرافی یک مرحله‌ای نشان داده‌شده و مرکز آن در ۶۰۵.۵ و ۶۱۱.۹ و ۶۷۱.۱ نانومتر قرار دارد. محدوده تنظیم وابستگی به دما برای لیزر HPDLC DFB با تخدیر رنگ و سه طول‌موج به‌اندازه ۸ نانومتر بوده است. انتشار لیزر از مرتبه ۹ ام در HPDLC DFB با MEH-PPV به‌عنوان محیطی فعال نیز موردبررسی قرارگرفته و ویژگی‌های قطبی‌سازی-s ایده آلی نشان داده است. انکسار برای لیزر تابی دو طول‌موج با DSM به‌عنوان محیطی فعال، ترتیب مرتبه ۹ ام و ۸ ام است. نتایج این کار روشی برای ساخت تمام سامانه‌های فشرده و مقرون‌به‌صرفه لیزر هوشمند حالت‌جامد ارائه می‌دهد. این روش در تحقیقات علمی و کاربردی و درجایی که انتشار چندین طول‌موج موردنیاز است، کاربرد دارد

Abstract

Organic solid-state tri-wavelength lasing was demonstrated from dye-doped holographic polymer-dispersed liquid crystal (HPDLC) distributed feedback (DFB) laser with semiconducting polymer poly[-methoxy-5-(2′-ethyl-hexyloxy)-1,4-phenylene-vinylene] (MEH-PPV) and laser dye [4-(dicyanomethylene)-2-methyl-6-(p-dimethylaminostyryl)-4H-pyran] (DCM) by a one-step holography technique, which centered at 605.5 nm, 611.9 nm, and 671.1 nm. The temperature-dependence tuning range for the tri-wavelength dye-doped HPDLC DFB laser was as high as 8 nm. The lasing emission from the 9th order HPDLC DFB laser with MEH-PPV as active medium was also investigated, which showed excellent s-polarization characterization. The diffraction order is 9th and 8th for the dual-wavelength lasing with DCM as the active medium. The results of this work provide a method for constructing the compact and cost-effective all solid-state smart laser systems, which may find application in scientific and applied research where
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