-
公开(公告)号:KR1020160066906A
公开(公告)日:2016-06-13
申请号:KR1020140172303
申请日:2014-12-03
Applicant: 한국과학기술원
IPC: G02B6/13
Abstract: 본발명은수 나노미터수준의정밀도로광학소자를제작할수 있는광학소자제작방법및 제작장치에관한것으로, 전자빔에의해휘발성부분과비휘발성부분으로분해되는유기전구체를진공챔버에도입하고기판에전자빔을조사함으로써분해된비휘발성부분이기판에증착되어광학소자를형성하도록하는것을특징으로한다. 본발명의제작방법및 제작장치에따르면, 수나노미터수준의정밀도로광학소자를제작할수 있고, 평평하지않은기판에도광학소자를형성할수 있으며, 복잡한 3차원구조의광학소자를형성할수 있을뿐만아니라, 구조튜닝이가능한효과가있다.
Abstract translation: 本发明涉及一种能够精确地制造具有纳米精度的光学元件的光学元件的制造方法及其制造装置。 主要特征是通过将通过电子束分解成挥发性和非挥发性部分的有机前体引入而形成光学元件,并将电子束辐射到基板上,以使破碎的非易失性部分沉积在基板上。 根据所公开的说明书,本发明能够制造具有纳米精度的光学元件,在不平坦的基板上形成光学元件,形成复杂的三维结构光学元件,并且用于调谐结构。
-
公开(公告)号:KR101382258B1
公开(公告)日:2014-04-10
申请号:KR1020130013362
申请日:2013-02-06
Applicant: 한국과학기술원
Abstract: The present invention relates to an optical nanoantenna including a single-crystalline Ag nanoplate. The optical nanoantenna comprises: a receiver disposed at one side end of the Ag nanoplate and receiving incident light; and a transmitter disposed at the other side end thereof and transmitting surface plasmon-polariton (SPP) waves propagated along the surface of the Ag nanoplate; which are separately disposed, wherein the SPP waves induced by the incident light received from the receiver along the surface thereof is propagated to be transmitted to the transmitter.
Abstract translation: 本发明涉及一种包括单晶Ag纳米板的光学纳米天线。 光学纳米天线包括:接收器,设置在Ag纳米板的一侧端并接收入射光; 和位于其另一侧的发射器,并且传输沿着Ag纳米板表面传播的表面等离子体激元(SPP)波; 其中分离地设置由从接收器沿其表面接收的入射光引起的SPP波被传送到发送器。
-
公开(公告)号:KR101301969B1
公开(公告)日:2013-08-30
申请号:KR1020120049598
申请日:2012-05-10
Applicant: 고려대학교 산학협력단 , 한국과학기술원
Abstract: PURPOSE: An optical trapping device using plasmonic nanoantennas is provided to form nano-size optical trapping potential, thereby safely and effectively trapping damageable biological particles or particles with low refractive index compared with surrounding materials (fluid). CONSTITUTION: An optical trapping device (1) captures microparticles contained in a fluid (3) by irradiating the fluid by a laser (15). The optical trapping device comprises: a glass (30) containing the fluid; a microparticle trapping laser generator (10) which generates a laser which penetrates the glass and irradiates the fluid; and a nanoantenna (20) which forms a nano-size optical potential well through the laser and captures the microparticles. The nanoantenna is placed on the glass.
Abstract translation: 目的:提供使用等离子体纳米天线的光学陷印装置,以形成纳米尺度的光学俘获电位,从而与周围的材料(流体)相比,安全有效地捕获具有低折射率的可损坏的生物颗粒或颗粒。 构成:光学捕获装置(1)通过用激光(15)照射流体来捕获包含在流体(3)中的微粒。 光学捕获装置包括:容纳流体的玻璃(30); 微粒捕获激光发生器(10),其产生穿透玻璃并照射流体的激光; 和纳米天线(20),其通过激光形成纳米尺寸的光电势阱并俘获微粒。 纳米天线放在玻璃上。
-
公开(公告)号:KR101725768B1
公开(公告)日:2017-04-12
申请号:KR1020140172303
申请日:2014-12-03
Applicant: 한국과학기술원
IPC: G02B6/13
Abstract: 본발명은수 나노미터수준의정밀도로광학소자를제작할수 있는광학소자제작방법및 제작장치에관한것으로, 전자빔에의해휘발성부분과비휘발성부분으로분해되는유기전구체를진공챔버에도입하고기판에전자빔을조사함으로써분해된비휘발성부분이기판에증착되어광학소자를형성하도록하는것을특징으로한다. 본발명의제작방법및 제작장치에따르면, 수나노미터수준의정밀도로광학소자를제작할수 있고, 평평하지않은기판에도광학소자를형성할수 있으며, 복잡한 3차원구조의광학소자를형성할수 있을뿐만아니라, 구조튜닝이가능한효과가있다.
-
-
-