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Broadly tunable laser operation near 2μm in a locally disordered crystal of Tm3+-doped NaGd(WO4)2

机译:在掺有Tm3 +的NaGd(WO4)2的局部无序晶体中的2μm附近可广泛调谐的激光操作

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摘要

Output powers as high as 300mW were obtained at 1925nm in the cw regime with a Tm laser operating at room temperature, either with Ti-sapphire or diode laser pumping, using a new single crystal of NaGd(WO4)2 grown by the Czochralski method and doped with 5mol.% of Tm3+ in the melt. This crystal belongs to the I4¯ tetragonal space group and exhibits a locally disordered structure due to the random occupancy of the same lattice sites by Na and Gd (or Tm) ions. The local disorder results in large bandwidths of the Tm3+ optical transitions (e.g., FWHM≈60cm−1 at 5K for the H63-->F43 transition involved in the laser emission), which allows one to obtain one of the broadest laser tunability ranges, from 1813 to 2025nm(≈17THz), achieved with a Tm3+-doped crystalline material. A detailed characterization of the Tm3+ optical spectroscopy in this novel host was performed at 5 and 300K.
机译:使用通过Czochralski方法生长的新型NaGd(WO4)2单晶和在室温下工作的Tm激光器,钛蓝宝石激光器或二极管激光器泵浦,在连续波模式下在1925nm处可获得高达300mW的输出功率。在熔体中掺杂了5mol。%的Tm3 +。该晶体属于I4′四方空间群,由于Na和Gd(或Tm)离子随机占据相同晶格位,因而显示出局部无序结构。局部无序导致Tm3 +光学跃迁的带宽较大(例如,激光发射中涉及的H63-> F43跃迁,在5K时FWHM≈60cm-1),这使人可以获得最大的激光可调范围之一,掺有Tm3 +的晶体材料可实现1813至2025nm(≈17THz)的波长。在此新型主机中,Tm3 +光谱的详细表征是在5K和300K下进行的。

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