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Terahertz Generation Using Implanted InGaAs Photomixers and Multi-wavelength Quantum Dot Lasers 被引量:1
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作者 Y.Hou j.r.liu +6 位作者 M.Buchanan A.J.Spring Thorpe P.J.Poole H.C.Liu Ke Wu Sjoerd Roorda X.P.Zhang 《Nano-Micro Letters》 SCIE EI CAS 2012年第1期10-13,共4页
We report on a study of terahertz(THz) generation using implanted In Ga As photomixers and multi-wavelength quantum dot lasers. We carry out In Ga As materials growth, optical characterization, device design and fabri... We report on a study of terahertz(THz) generation using implanted In Ga As photomixers and multi-wavelength quantum dot lasers. We carry out In Ga As materials growth, optical characterization, device design and fabrication, and photomixing experiments. This approach is capable of generating a comb of electromagnetic radiation from microwave to terahertz. For shortening photomixer carrier lifetime, we employ proton implantation into an epitaxial layer of lattice matched In Ga As grown on InP. Under a 1.55 μm multimode In GaAs/In GaAsP quantum dot laser excitation, a frequency comb with a constant frequency spacing of 50 GHz generated on the photomixer is measured, which corresponds to the beats of the laser longitudinal modes. The measurement is performed with a Fourier transform infrared spectrometer. This approach affords a convenient method to achieve a broadband multi-peak coherent THz source. 展开更多
关键词 Proton implanted In Ga As Trahertz Photomixer Multi-wavelength quantum dot laser Fourier transform infrared spectroscopy
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Deformation behaviors of as-built and hot isostatically pressed Ti-6Al-4V alloys fabricated via electron beam rapid manufacturing 被引量:3
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作者 Z.Liu Z.B.Zhao +6 位作者 j.r.liu L.Wang S.X.Zhu G.Yang S.L Gong Q.J.Wang R.Yang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第11期2552-2558,共7页
The deformation behavior of as-built and hot isostatically pressed(HIP)Ti-6Al-4V alloys fabricated using electron beam rapid manufacturing(EBRM)were investigated in this work.The deformation characteristics were chara... The deformation behavior of as-built and hot isostatically pressed(HIP)Ti-6Al-4V alloys fabricated using electron beam rapid manufacturing(EBRM)were investigated in this work.The deformation characteristics were characterized using a laser scanning confocal microscope and electron back-scattered diffraction(EBSD).In the as-built sample,prismatic slip was the main mode of deformation,as well as a small amount of basal slip and cross-slip.Some planar slip lines with large length scales were observed across severalαlamellae.After hot isostatical pressing,prismatic and basal slip were the main mode of deformation,accompanied by abundant cross-slip and multiple slip,and most of the slip lines were blocked within an a lamellae.These differences in deformation behavior were associated with the coarsening of a laths and the more retained p phase after HIP compared to the as-built alloy.More cross-slip and multiple slip can lead to superior elongation-to-failure and a greater strain hardening effect in the HIP alloy compared to the as-built sample. 展开更多
关键词 Electron beam rapid manufacturing TI-6AL-4V Hot isostatic pressure Mechanical properties Slip behavior
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Distinct dendritic α phase emerging on the surface of primary α phase in a compressed near-α titanium alloy 被引量:3
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作者 Z.Liu Z.B.Zhao +2 位作者 j.r.liu Q.J.Wang R.Yang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第4期666-669,共4页
The characteristic of the surface morphology of primary α phase was studied in a deformed near-α tita- nium alloy. Dendritic α phase emerged on the surfaces of primary α phase when the alloy was air-cooled in α ... The characteristic of the surface morphology of primary α phase was studied in a deformed near-α tita- nium alloy. Dendritic α phase emerged on the surfaces of primary α phase when the alloy was air-cooled in α +β phase field after deformation. The dendritic α grain has the same orientation with its original primary α grain. The formation of the dendritic α phase could be explained by interface instability in epi- taxial growth process of the primary α phase. The dislocations induced by deformation could facilitate the formation of dendritic α phase leading to the dendritic α phase and more obvious with the increase of strain. The growth of dendritic α phase was finally limited by the nucleation of second α phase with cooling. 展开更多
关键词 Epitaxial growth Dendritic α phase Microstructure Interface instability Hot deformation
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Effect of Base Material on Microstructure and Texture Evolution of a Ti–6Al–4V Electron-Beam Welded Joint 被引量:6
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作者 G.Q.Wang Z.B.Zhao +5 位作者 B.B.Yu j.r.liu Q.J.Wang J.H.Zhang R.Yang J.W.Li 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2017年第5期499-504,共6页
The effect of base material(BM) on microstructure and crystallographic orientation evolution of a Ti–6Al–4V electron-beam welded joint was investigated. Meanwhile, the crystallographic orientation of prior b grain... The effect of base material(BM) on microstructure and crystallographic orientation evolution of a Ti–6Al–4V electron-beam welded joint was investigated. Meanwhile, the crystallographic orientation of prior b grains was studied by advanced electron backscattered diffraction data processing. The inhomogeneity of microstructure within welded joint was formed due to the different microstructures of BM. By comparing microstructure details of the welded joint, including microstructure morphology and crystallographic orientation with those of the base material, it can be found that both the microstructure morphology and crystallographic orientation of the EBW joint would be controlled by BM. 展开更多
关键词 Electron-beam welding Titanium alloys Prior b orientation Microstructure Texture
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Analysis of local crystallographic orientation in an annealed Ti60 billet 被引量:1
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作者 Z.B.Zhao Z.Liu +2 位作者 Q.J.Wang j.r.liu R.Yang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第4期591-595,共5页
A heterogeneous microstructure in terms of local orientation distribution is often found in near-α titanium alloys. The presence of large regions with similar crystallographic orientation, called ‘macrozones',co... A heterogeneous microstructure in terms of local orientation distribution is often found in near-α titanium alloys. The presence of large regions with similar crystallographic orientation, called ‘macrozones',could drastically decrease the fatigue performance of titanium alloys. The present work reports on the crystallographic orientation of a near-α titanium alloy, Ti60, billet after annealing in an α+β phase field.The texture was found to be weak, and no obvious macrozone was found in our measured zone where the variant selection is suppressed. Meanwhile, in-depth electron backscattered diffraction(EBSD) analysis was applied to evaluate the final microstructure, and the mechanisms by which they formed were analyzed. 展开更多
关键词 TITANIUM ALLOYS Microstructure TEXTURE Heat treatment EBSD
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