• Title/Summary/Keyword: Photonic Bandgap(PBG)

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Photonic Crystal Mirror with Ultra Wide-Band omnidirectional-photonic bandgap (초 광대역 옴니-광자 밴드 갭을 갖는 광자결정 미러)

  • Nam, Gi-Yeon;Cho, Sung-June;Lee, Hyun-Yong
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2005.07a
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    • pp.455-458
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    • 2005
  • 옴니(omnidirectional)-PBG(photonic bandgap)의 크기는 쌍을 이루는 광자결정 재료의 고유 굴절률, 충진율 및 두께에 의해 결정되는 것이 일반적이다. 그러나 광자결정체가 다중주기를 가지도록 제작하면 옴니-PBG의 크기를 변화 시킬 수 있다. 본 연구에서는 Si/$SiO_2$를 기본 구조로 하는 광대역 옴니-PBG용 광자결정 구조를 설계, 제작하고 그 특성을 평가 하였다. 각각 단일 주기 $\Lambda_1$(426.9nm) 및 $\Lambda_2$(306.9nm)를 갖는 8N-Si/$SiO_2$ 광자결정에 대해 TE/TM-편광광 $5^{\circ}$$45^{\circ}$ 입사각에 대한 반사-스펙트라 측정결과는 설계값과 일치하였다. 특히 이중주기 $(8N\cdot{\Lambda}_1+8N\cdot{\Lambda}_2)$를 갖도록 제작된 Si/$SiO_2$ 광자결정은 입사각 $5^{\circ}$의 TE-편광광 반사-스펙트라 측정결과, 약 1050-2500nm의 광대역 파장범위에서 광자 밴드 갭을 보였다.

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A Study on Phase noise Reduction Technique in Oscillator Using PBG (PBG를 이용한 Oscillator의 Phase Noise Reduction에 관한 연구)

  • Oh Icsu;Seo Chulhun
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.42 no.1
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    • pp.99-103
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    • 2005
  • In this paper, a new technique to reduce the phase noise in microwave oscillators is proposed using the resonant characteristics of the Photonic Bandgap(PBG). We applied PBG structure to ground of the microstrip line resonator with the low Q(Quality factor). Therefore, we improved about 10 dBc in contrast to phase noise characteristic of the conventional microstrip line oscillator at 2.4 GHz @ 100 MHz offset. Output power is 7.09 dBm.

Fabrication of Master Replication by Nanoimprint Lithography (나노 임프린트 리소그라피에 의한 마스터 복제 공정)

  • Jeong, Myung-Yung
    • Proceedings of the KSME Conference
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    • 2003.04a
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    • pp.1078-1082
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    • 2003
  • A feasibility study for the fabrication of master replication with nanostructures by Nanoimprint Lithography (NIL) was investigated for application of polymer Photonic Bandgap (PBG) devices used in photonic IC. Large area gratings of $9{\times}15(mm^2)$ with p = 400 nm was successfully embossed on PMMA on silicon wafer and the embossing parameters (temperature, pressure, time) were established. A precise control of $O_2$ plasma Reactive Ion Etching (RIE) process time allowed window opening over the whole area despite the presence of wafer bending. Master replication with aspect ratio 1 was successfully fabricated, but master replication with aspect ratio 3 needs to optimize parameters. All replications were done in a NIL process.

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A Design of 3 dB Power Divider using Slow-wave Characteristic (Slow-wave 특성을 이용한 3 dB 전력 분배기 설계)

  • Kim, Chul-Soo;Park, Jun-Seok;Ahn, Dal;Kim, Geun-young
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.10 no.5
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    • pp.694-700
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    • 1999
  • In this paper, we studied the design of power divider using the slow-wave effect of Photonic Bandgap structure, which is etched on the ground plane. The proposed PBG structure can provides the changing of the characteristic impedance of the transmission line and the group delay velocity characteristic. Therefore we can make wider width than the width of conventional transmission line and decrease the length of transmission line. We presented the application for power divider using the characteristic impedance and electrical length extracted from scattering parameter. As adding proposed defect units, the effect of defect is studied. The experimental results show good agreements with the simulated results.

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Lowpass Filter Design For Eliminate The Harmonic Signals Using Photonic Bandgap Structure

  • Kim Jang Kwon;Kim Dong Sik;Kang Chang Soo
    • Proceedings of the IEEK Conference
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    • summer
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    • pp.19-22
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    • 2004
  • The goal of this study is to realize the PBG lowpass filter using novel PBG structure modification both upper layer and ground layer. It has been designed three aperture slots of ground layer for PBG structure which the center slot shape of ground is two type, rectangular and dumbbell. This PBG LPF has the character of the broader stopband and smaller size than typical LPF. The measurement results have matched the simulated ones. It has the cutoff frequency of each 4.465GHz and 3.52GHz and at least -20dB of the signal suppression at the stopband

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Power Amplifier Design using the Novel PBG Structure for Linearity Improvement and Size Reduction (선형성 개선과 크기 축소를 위한 새로운 PBG 구조를 이용한 전력증폭기 설계)

  • Choi, Jae-Won;Seo, Chul-Hun
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.44 no.7 s.361
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    • pp.29-34
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    • 2007
  • This paper presents a novel photonic bandgap (PBG) structure for size reduction and linearity improvement in power amplifier. The proposed structure is a two-dimensional (2-D) periodic lattice patterned on a dielectric slab that does not require nonplanar fabrication process. Throughout the experi-mental results, this structure has more broad stopband and high suppression performance than conventional three cell PBG and distorted uniplanar compact-PBG (DUC-PBG). This new PBG structure can be applied with power amplifier for linearity improvement. The 3rd intermodulation distortion (IMD3) of the power amplifier using new PBG structure is -36.16 dBc for (code division multiple access) CDMA applications. Compared with power amplifier without the proposed PBG structure, improved IMD3 is -13.49 dBc.

A Realization on the Dualband VCO Using T-Junction Switching Circuit (T-Junction 스위칭 회로를 이용한 이중 대역 전압제어 발진기 구현)

  • Oh Icsu;Seo Chulhun
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.42 no.1
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    • pp.105-110
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    • 2005
  • In this paper, a new technique to reduce the phase noise in microwave oscillators is proposed using the resonant characteristics of the Photonic Bandgap(PBG). We applied PBG structure to ground of the microstrip line resonator with the low Q(Quality factor). Therefore, we improved about 10 dBc in contrast to phase noise characteristic of the conventional microstrip line oscillator at 2.4 GHz @ 100 MHz offset. Output power is 7.09 dBm.

Calculation of the Characteristic Impedance of Transmission Lines with Periodic Structures (주기구조가 결합된 전송선로의 특성 임피던스 계산)

  • Lim, Jong-Sik;Lee, Jae-Hoon;Lee, Jun;Han, Sang-Min;Ahn, Dal
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.7
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    • pp.2541-2548
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    • 2010
  • This paper describes the calculation for characteristic impedance of transmission line with periodic structures such as defected ground structure (DGS) and photonic bandgap (PBG). The previous method which uses the ${\lambda}$/4 transmission line model is reviewed and its disadvantage that the calculated characteristic impedance is strongly dependent on the frequency is discussed. The characteristic impedance of transmission lines with periodic structures are calculated using the ${\lambda}$/4 transmission line model and analytic method. The calculated characteristic impedance by the latter method is an almost constant value while that from the first method depends on the frequency strongly. In addition, the characteristic impedance of the transmission line with PBG is calculated and proposed, while it has been rarely studied ever. S-parameters are obtained from the measurement using the fabricated sample as well as simulation, and used for calculating the characteristic impedances and comparison. The characteristic impedances calculated from the measured S-parameters agree well with the simulated results. It is well described that the analytic method to calculate the characteristic impedance of transmission lines on uniform dielectric structures can be applied successfully to the transmission lines with periodic structures such as DGS and PBG.

Design of the Compact Microstrip Bandpass Filter by using DGS Resonator (DGS 공진기를 이용한 소형 마이크로스트립 대역통과 필터의 설계)

  • Cho, Young-Bin;Jun, Kye-Suk
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.30 no.2A
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    • pp.147-152
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    • 2005
  • In this paper, we have proposed a novel DGS(Defected Ground Structure) resonator and has designed the band -pass filter using the proposed ${\subset}$ stub-I type DGS resonator. This structure has strong advantages that can vary the retune loss at the passband freely and also can easily tune the attenuation pole frequency at the stopband. The bandpass filter can be made more smaller than the existing filters and be used to find the various applications for eliminating the harmonics and spurious mode at IMT-2000 band.

Room-temperature 2-D PBG laser employing wafer fusion (기판 융용 접합을 이용한 상온동작 2차원 광밴드갭 레이저)

  • 황정기;류한열;송대성;한일영;이용희;장동훈
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.02a
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    • pp.274-275
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    • 2000
  • 광결정(photonic crystal)으로 광원의 자발 방출을 조절하면 문턱전류 없는 레이저, 고효율 다이오드, 파장 크기에서 손실 없이 급격히 꺾을 수 있는 광도파로 등 기존의 광소자에서 얻을 수 없는 좋은 성능을 얻을 수 있을 것으로 예상된다. 이러한 광결정은 유전체를 파장정도 크기에서 주기적으로 배치시킨 인공적인 결정인데 고체에서 원자의 주기적인 배치로 전자가 전파할 수 없는 진동수 영역, 즉 밴드갭이 생기는 것과 유사하게 빛에 대해서 빛이 전파할 수 없는 진동수 영역인 광밴드갭(photonic bandgap)을 가진다. 그런데 관심있는 광영역에서 3차원 모든 방향으로 광밴드갭이 있는 구조물은 마이크로미터보다 작은 내부 구조를 가지는 복잡한 3차원 구조물로 제작이 어렵다. 이러한 어려움을 극복하기 위해 제작이 비교적 용이한 3차원 광밴드갭 구조물이 찾아지고 있다. 다른 접근 방법으로 평면(x-y)에서는 2차원 광밴드갭을 이용하고 제 3의 방향(z축)으로는 전반사를 이용하는 구조는 제작이 용이할 뿐만 아니라 처음부터 광원의 편광을 TE 또는 TM 모드로만 방출 되도록 준비해 줄 수 있으면 거의 3차원 광결정에서 얻을 수 있는 효과를 낼 수 있는 것으로 발표되었다.$^{(1)}$ 이 방법을 이용하여 최근에 미국의 캘리포니아 공과대학(Caltech)을 중심으로 레이저 동작을 보여 주었다.$^{(2.3)}$ 공기로 둘러싸인 얇은 유전체 평판에서 생기는 전반사와 평판 위에 2차원 삼각형살창(triangular lattice)에 구멍을 뚫어 얻는 2차원 광밴드갭을 이용해 3차원 공진모드를 형성하였다. 이러한 구조에서 1개만 구멍을 매워서 만든 공진기는 저온(143 K)에서 레이저 발진을 보였고 여러 개의 구멍을 매운 경우는 상온에서 펌프 펄스의 유지시간이 0.5% 인 경우 레이저가 동작하는 것을 보여주었다. 이는 구조내에서 열전도가 문제가 된다는 것을 의미하는데 위아래가 공기로 둘러 싸여 있어 발생한 열이 가는 유전체 네트웍을 통해서만 전달 될 수 있기 때문이다. (중략)

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