Invention Grant
US09261714B2 Plasmonic all-optical switch and light control method using the same
有权
等离子全光开关和光控制方法使用相同
- Patent Title: Plasmonic all-optical switch and light control method using the same
- Patent Title (中): 等离子全光开关和光控制方法使用相同
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Application No.: US14533297Application Date: 2014-11-05
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Publication No.: US09261714B2Publication Date: 2016-02-16
- Inventor: Sun Ho Kim , Jae Hun Kim , Chulki Kim , Kyungsun Moon , Min Ah Seo , Deok Ha Woo , Seok Lee , Jong Chang Yi , Taikjin Lee , Youngchul Chung
- Applicant: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
- Applicant Address: KR Seoul
- Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
- Current Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
- Current Assignee Address: KR Seoul
- Agency: NSIP Law
- Priority: KR10-2014-0089684 20140716
- Main IPC: G02F1/03
- IPC: G02F1/03 ; G02F1/01 ; G02B5/00 ; G02F1/00 ; B82Y20/00

Abstract:
A plasmonic all-optical switch includes a graphene layer, a first dielectric layer located on the graphene layer, a nano-antenna located on the first dielectric layer, and a second dielectric layer located on the nano-antenna. An incident beam is propagated by means of a surface plasmon wave generated at an interface between the graphene layer and the first dielectric layer. Further, localized surface plasmon resonance is selectively generated at an interface between the nano-antenna and the second dielectric layer by means of a pump beam incident to the nano-antenna to decrease an intensity of the incident beam. The plasmonic all-optical switch may operate at an ultrahigh speed just with a small light energy without any electric method, greatly reduce power consumption of an IT device by applying to an all-optical transistor or the like, and increase a processing rate.
Public/Granted literature
- US20160018675A1 PLASMONIC ALL-OPTICAL SWITCH AND LIGHT CONTROL METHOD USING THE SAME Public/Granted day:2016-01-21
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