[24] S. Han, H.S.Kim, I.S.Lee, Y.H.Jung “BROADBAND ACHROMATIC METALENS THROUGH FZP ARRAY OF NANO PLASMONIC ANTENNA,” KR 10-2738082 (2024)
[23] S. Han, S.B.Yoo, H.M.Koo, M.H.Kuk, J.Heo, H.W.Kim, “AUTOMATIC IMAGE REGISTRATION SYSTEM OF FUSION SENSOR,” KR 10-2707925 (2024)
[22] S. Han, S.B.Yoo, H.M.Koo, M.H.Kuk, J.Heo, H.W.Kim, “LiDAR ANTI-INTERFERENCE DEVICE USING MULTI-PULSE,” KR 10-2608534 (2023)
[21] S. Han, M.H.Kuk, H.J.Chong, D.Y.Park, J.Heo, A.R.Park, S.J.Sohn, “Method of calibrating a plurality of sensors and calibration system thereof,” KR 10-2462456 (2022)
[20] S.-W. Kim, S. Han, H. Kim, Y. W. Kim, “EUV high harmonic generation apparatus,” KR 10-1909790 (2018)
[19] S.-W. Kim, S. Kim, Y.-J. Kim, Y. Kim, J. Park, S. Park, S. Han, “Method and apparatus to generate high power femtosecond light pulses by combining nonlinear polarization rotation and saturable absorption,” KR 10-1394720 (2014)
[18] S.-W. Kim, Y. Kim, S. Kim, S. Han, S. Park, J. Park, “An alignment method of grating pair based pulse stretcher at chirped pulse amplification system,” KR 10-1400512 (2014)
[17] S.-W. Kim, Y. Kim, S. Kim, S. Han, S. Park, J. Park, “A fiber-based chirped pulse amplification system which could compensate alignment changes caused by environmental changes,” KR 10-1361980 (2014)
[16] S.-W. Kim, Y. Kim, S. Kim, S. Han, S. Park, J. Park, “Sub 10MHz - All normal dispersion fiber laser oscillator modelocked by saturable absorber and nonlinear polarization rotation phenomena,” KR 10-1340387 (2013)
[15] S.-W. Kim, Y. Kim, S. Kim, S. Han, J. Park, “The ultrafast fiber laser resonator based on saturable absorber mirror(SAM) and optical filter,” KR 10-1268569 (2013)
[14] S.-W. Kim, Y.-J. Kim, Y. Kim, S. Kim, J. You, S. Han, S. Park, “Laser processing apparatus and method using dispersion control of pulse laser,” KR 10-1259580 (2013)
[13] S.-W. Kim, Y.-J. Kim, Y. Kim, S. Kim, J. You, S. Han, S. Park, “The depth of the modified cutting device through a combination of characteristics,” KR 10-1232008 (2013)
[12] S.-W. Kim, Y.-J. Kim, Y. Kim, J. You, S. Kim, S. Park, S. Han, “Fiber based laser systems with 0.1 ~ 30 MHz repetition rate and specimen manufacturing by use of these laser sources,” KR 10-1268568 (2013)
[11] S.-W. Kim, Y.-J. Kim, Y. Kim, J. You, S. Kim, S. Park, S. Han, “Substrate Dicing Method by Nonlinear Focal Shift using Femtosecond Pulse Lasers,” KR 10-1164418 (2012)
[10] S.-W. Kim, Y.-J. Kim, Y. Kim, J. You, S. Kim, S. Park, S. Han, “Method for cutting processing side using femtosecond pulse laser applied PZT element,” KR 10-1149594 (2012)
[9] S.-W. Kim, Y.-J. Kim, Y. Kim, J. You, S. Kim, S. Park, S. Han, “Automation of Passive Mode-locking Process of Fiber Femtosecond Pulse Lasers,” KR 10-1155541 (2012)
[8] S.-W. Kim, Y.-J. Kim, Y. Kim, S. Kim, J. You, S. Han, S. Park, “Laser processing apparatus and method using interference of polarized laser beams,” KR 10-1212527 (2012)
[7] S.-W. Kim, Y.-J. Kim, Y. Kim, S. Kim, J. You, S. Han, S. Park, “Laser processing apparatus and method using plasmon resonance,” KR 10-1210654 (2012)
[6] S.-W. Kim, Y.-J. Kim, Y. Kim, S. Kim, J. You, S. Han, S. Park, “Apparatus and method for monitoring laser processing status using plasma,” KR 10-1212460 (2012)
[5] S.-W. Kim, Y.-J. Kim, Y. Kim, S. Kim, J. You, S. Han, S. Park, “Laser processing method and apparatus using electric field,” KR 10-1210653 (2012)
[4] S.-W. Kim, Y.-J. Kim, Y. Kim, S. Kim, J. You, S. Han, S. Park, “Ultrashort pulse laser and water cutting device and method using coagulation,” KR 10-1202256 (2012)
[3] S.-W. Kim, Y.-J. Kim, Y. Kim, S. Kim, J. You, S. Han, S. Park, “Laser processing method and apparatus using ultrasonic wave,” KR 10-1207583 (2012)
[2] S.-W. Kim, Y.-J. Kim, Y. Kim, J. You, S. Kim, S. Park, S. Han, “Efficient Substrate Dicing by Optimized Temporal Intensity Distribution of Ultrafast Femtosecond Pulses,” KR 10-1181718 (2012)
[1] S.-W. Kim, Y.-J. Kim, Y. Kim, J. You, S. Kim, S. Han, “Substrate Dicing Method by Nano Void Array Formation using Femtosecond Pulse Lasers,” KR 10-1181719 (2012)