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Journal

2022       2021       2020      2019      2018       2017

 

 

   

 

Since 2010.

A. International Journal Papers (SCI)

 

[1] J.W.Leem, and J.S.Yu*, "Device characteristics and metal-dielectric high-reflectivity coating analysis of ¥ë~ 1.3 mm InGaAsP/InGaAsP MQW PBH lasers", Phys. Status Solidi (a) 207(1), pp. 217-223, 2010. IF:1.458

[2] Y.M.Song, J.S.Yu, and Y.T.Lee, "Antireflective submicrometer gratings on thin-film silicon solar cells for light-absorption enhancement", Opt. Lett. 35(3), pp. 276-278, 2010. IF:3.316 (JCR TOP 10%)

[3] C.Y.Park, J.M.Lim, J.S.Yu, and Y.T.Lee, "Structural and antireflective characteristics of catalyst-free GaN nanostructures on GaN/sapphire template for solar cell applications", Appl. Phys. Lett. 96(15), 151909, 2010. IF:3.82

[4] H.K.Lee and J.S.Yu*, "Thermal analysis of InGaN/GaN multiple quantum well light emitting diodes with different mesa sizes", Jpn. J. Appl. Phys. 49(4), 04DG11, 2010. IF:1.018

[5] Y.M.Song, S.J.Jang, J.S.Yu, and Y.T.Lee, "Bioinspired parabola subwavelength structures for improved broadband antireflection", Small 6(9), pp. 984-987, 2010. IF:7.333 (JCR TOP 10%) Cover Picture

[6] Y.M.Song, H.J.Choi, J.S.Yu, and Y.T.Lee, "Design of highly transparent glasses with broadband antireflective subwavelength structures", Opt. Express 18(12), pp. 13063-13071, 2010. IF:3.749 (JCR TOP 10%)

[7] H.K.Lee, J.S.Yu*, and Y.T.Lee, "Thermal analysis and characterization of the effect of substrate thinning on the performances of GaN-based light emitting diodes", Phys. Status Solid (a) 207(6), pp.1497-1504, 2010. IF:1.458

[8] J.W.Leem, Y.M.Song, Y.T.Lee, and J.S.Yu*, "Antireflective properties of AZO subwavelength gratings patterned by holographic lithography", Appl. Phys. B: Lasers and Optics 99(4), pp. 695-700, 2010. IF:2.239

[9] J.W.Leem, J.S.Yu*, and Y.T.Lee "Optimum design of InGaP/GaAs dual-junction solar cells with different tunnel diodes", Opt. Quantum Electron. 41(8), pp. 605-612, 2009. IF:0.513

[10] H.K.Lee and J.S.Yu*, "Thermal analysis of short wavelength InGaAs/InAlAs quantum cascade lasers", Solid-State Electron. 54(8), pp. 769-776, 2010. IF:1.438

[11] C.Y.Park, G.W.Park, J.S.Yu, and Y.T.Lee, "Influence of thermal treatment and electron-blocking layers on the optical properties of InGaP/InGaAlP MQW structures for red RCLEDs", Semicond. Sci. Technol. 25(8), 085012(5pp), 2010. IF:1.323

[12] S.J.Jang, C.I.Yoe, J.S.Yu, and Y.T.Lee, "Performance improvement by metal-dielectric HR coating in laterally coupled DFB laser with metal surface gratings", Appl. Phys. B: Lasers and Optics 100(3), pp. 553-558, 2010. IF:2.239

[13] S.J.Jang, C.I.Yoe, J.S.Yu, and Y.T.Lee, "1.55-¥ìm DFB lasers with narrow ridge stripe and second-order metal surface gratings by holographic lithography", Phys. Status Solidi (a) 207(8), pp. 1982-1987, 2010. IF:1.458

[14] J.W.Leem and J.S.Yu*, "Structural, optical, and electrical properties of AZO films by tilted angle sputtering method", Thin Solid Films 518(22), pp. 6285-6288, 2010. IF:1909 

[15] Y.H.Ko and J.S.Yu*, "Design of strain-compensated InxGa1-xAs/InyAl1-yAs quantum cascade laser structures towards the shorter wavelengths" Opt. Quantum Electron. 41(11-13), pp. 811-818, 2009. IF:0.513

[16] J.W.Leem, Y.M.Song, Y.T.Lee, and J.S.Yu*, "Effect of etching parameters on antireflection properties of Si subwavelength grating structures for solar cell applications", Appl. Phys. B: Lasers and Optics 100(4), pp. 891-896, 2010. IF:2.239

[17] Y.H.Ko and J.S.Yu*, "Design optimization of quantum cascade laser structures at ¥ë~ 11-12 ¥ìm" Phys. Status Solidi (a) 207(9), pp. 2190-2197, 2010. IF:1.458

[18] C.I.Yeo, S.J.Jang, J.S.Yu, and Y.T.Lee, "1.3-¥ìm Laterally Tapered Ridge Waveguide DFB Lasers with Second-Order Cr Surface Gratings ", Photon. Technol. Lett. 22(22), pp.1668-1670, 2010. IF:1.987

[19] J.S.Yu, S.Slivken, and M.Razeghi, "Injector doping level dependent continuous-wave operation of InP-based QCLs at ¥ë~ 7.3 ¥ìm above room temperature" Semicond. Sci. Technol. 25(12), 125015(5pp), 2010. IF:1.323

[20] Y.H.Ko and J.S.Yu*, "Structural and antireflective properties of ZnO nanorods synthesized using the sputtered ZnO seed layer for solar cell applications", J. Nanosci. Nanotechnol. 10(12), pp. 8095-8101, 2010. IF:1.351

[21] S.J.Jang, Y.M.Song, H.J.Choi, J.S.Yu, and Y.T.Lee, "Structural and optical properties of silicon by tilted angle evaporation", Surf. Coatings Technol. 205 (Supplement 1), pp.S447-S450, 2010. IF:2.135

ÃÑ 21Æí

 

2007~2009³âµµ

H. K. Lee, K. S. Chung,J. S. Yu, and M. Razeghi, "Thermal analysis of buried heterostructure quantum cascade lasers for long-wavelength infrared emission using 2D anisotropic heat-dissipation model" Physica Status Solidi (a) 206(2), pp.356-362, 2009. IF:1.458 ¿Ü 26Æí

 

 

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