• 제목/요약/키워드: 티타늄확산 광도파로

검색결과 6건 처리시간 0.018초

저손실 $Ti:LiNbO_3$ 광도파로제작 및 BPM 해석 (BPM Analysis and Preparation of Low Loss $Ti:LiNbO_3$ Optical Waveguide)

  • 김성구;윤형도;윤대원;박계춘;이진
    • 한국전기전자재료학회논문지
    • /
    • 제11권5호
    • /
    • pp.400-406
    • /
    • 1998
  • We investigated the preparation and guided-mode properties of $Ti:LiNbO_3$ waveguides which were fabricated by Ti in-diffusion. The diffusion method to reduce the Li out-diffusion was proposed. The optical guided-mode and propagation loss based on butt-coupling pigtailed with PMF-input were measured. How to improve the polishing grade of waveguide endfaces is newly proposed in this paper. To show the mode propagations, the BPM simulations of channel waveguide are described.

  • PDF

Air 분위기로 제작한 Ti:$LiNbO_3$ 도파로 특성 및 폴리싱 방법제안 (Properties of Ti:$LiNbO_3$ Optical Waveguide by Diffusion in Air Atmosphere and Proposal of a Polishing Method)

  • 김성구;윤형도;윤대원;한상필;박계춘;유용택
    • E2M - 전기 전자와 첨단 소재
    • /
    • 제10권7호
    • /
    • pp.682-691
    • /
    • 1997
  • We have investigated the guided optical properties of a Ti:LiNbO$_3$optical waveguide which was fabricated by Ti-diffusion in an air atmosphere and proposed an effective polishing method of waveguide endfaces. And the results of guided optical mode and fabrication condition were obtained as follows; \circled1 propagation loss : 0.53 dB/cm \circled2 mode size : horizontal/vertical=12.5${\mu}{\textrm}{m}$ \circled3 mode mismatch : 1.7 dB \circled4 diffusion temperature : 105$0^{\circ}C$, time : 8 hours \circled5 atmosphere : air

  • PDF

Total Fiber-to-fiber Insertion Loss가 <6dB 인 Ti:$LiNbO_3$ 과도파로 Pigtailing 및 손실분석 (The Pigrailing and The Loss Analysis of low loss LiNbO$_3$ Optical Waveguide with Fiber-to-fiber Insetion Loss<6dB)

  • 김성구;박계춘;조재철
    • 한국전기전자재료학회논문지
    • /
    • 제11권7호
    • /
    • pp.557-564
    • /
    • 1998
  • A low loss x-cut $LiNbO_3$optical waveguide was fabricated by Yi in-diffusion, and the properties of guided-mode and the total insertion loss of the pigtailed waveguide with polarization maintaining fiber(PMF) were measured at optical wavelength 1550nm. for forming the waveguides, the parameters of diffusion, Ti thickness, waveguide line-width, length, diffusion temperature, time and atmosphere were set $1400{\AA}$, $8{\mu}m$, 3.3cm, $1050^{\circ}C$, 8 hours and wet bubbled oxygen, respectively. And then after the polishing and piatailing, it showed that the total insertion loss was -4.1dB for TM mode, -5.5dB for TE mode, and mode size, that is, the horizontal/ vertical size were $13.8{\mu}m/18{\mu}m$ for TM mode, $9.6{\mu}m/6.5{\mu}m$ for TE mode.

  • PDF

x-cut $LiNbO_3$ 광도파로 제작 및 Ti 두께에 따른 Near-field 특성 변 화 (Preparation of x-cut $LiNbO_3$ Optical Waveguide and the Change in Near-field Properties according to Ti thickness)

  • 김성구;윤형도;윤대원;한상필;김창민;박계춘;이진;유용택
    • 한국전기전자재료학회논문지
    • /
    • 제11권2호
    • /
    • pp.146-153
    • /
    • 1998
  • The optical near-field patterns, propagation loss and mode sizes of x-cut $Ti:LiNbO_3$ optical waveguide which was fabricated by Ti-diffusion varying with Ti strip thickness in wet oxygen atmosphere were discussed at optical wavelength 1550nm. As Ti thickness increased from $760{\AA}$, the insertion loss of waveguide was decreased. But at Ti thickness $1500{\AA}$, mode sizes are widely broadened. The Ti thickness of below $1100{\AA}$ and above $1500{\AA}$ showed negative effects to propagation loss and fiber coupling. The best Ti thickness for fabricating low propagation loss and good fiber coupling was inferred to be between $1100{\AA}-1500{\AA}$ in our conditions. And for Ti thickness $1150{\AA}$, its propagation loss, horizontal/vertical mode sizes were showed 1.61 dB/cm, $11.9/8.9{\mu}m$ for TM, 0.22 dB/cm, $12.0/9.1{\mu}m$ for TE respectively.

  • PDF

광통신용 도파로형 $Ti:LiNbO_3$ AOTF 제작 및 특성 (Characteristics and Fabrication of a Waveguide Type $Ti:LiNbO_3$(Acousto-Optic Tunable Filter) for Optical Communications)

  • 김성구;한상필;윤형도;임영민;윤대원;정운조;박계춘;정해덕
    • 한국전기전자재료학회논문지
    • /
    • 제11권8호
    • /
    • pp.637-645
    • /
    • 1998
  • The characteristics of waveguide, electrode and packaging fabricated for acousto-optic tunable filters(AOTF) used for optical communications were analyzed. A $Ti:LiNbO_3$in-diffusing method was employed for the formation of the optical waveguide with a dimension of width $8{\mu}m$, length $30000-50000{\mu}m$ and varying the thickness. The diffusion was carried at $1050^{\circ}C$ for 8 hours to pattern the optical waveguide. The resulted waveguide exhibited a single mode at 1550nm optical wavelength. The width of IDT, with 10 SAM periods, was $5000{\mu}m$ . Impedances of the electrodes deposited with Au were analyzed using a network analyzer; $48.1\Omega$ at the center frequency of 193MHz for electrode thickness of $1500{\AA}$ and $50.7\Omega$ at the center frequency of 192MHz for $1600\AA$. And the characteristics of packaged AOTF was analyzed. When the electrical frequency 177.1MHz was applied to the device, the mode conversion efficiency was measured as 63% at the optical wavelength 1515nm.

  • PDF

Wet Oxygen 분위기로 제작한 z-cut $Ti;LiNbO_3$도파로 광특성 및 두께에 따른 삽입손실 (z-cut $Ti;LiNbO_3$ Waveguide Optical Properties and lnsertion Loss As a Function of $Ti;LiNbO_3$thickness Fabricated by wet Oxygen Atmosphere)

  • 김성구;윤형도;윤대원;박계춘;정해덕;이진
    • 한국전기전자재료학회논문지
    • /
    • 제11권10호
    • /
    • pp.903-910
    • /
    • 1998
  • Ti:LiNbO$_3$ optical waveguides have been fabricated by Ti-diffusion in wet oxygen atmosphere. The fabrication conditions of furnace temperature, diffusion time and bubbler temperature were 105$0^{\circ}C$, 8 hours and 9$0^{\circ}C$, respectively and Ti thickness was varied from 700$\AA$ to 1500$\AA$. In this paper, the nearfield patterns, mode sizes (hirizontal/vertical) and insertion loss of waveguides were discussed at wavelength 1550 nm ad function of Ti thickness. With the planar waveguide, the effective index change and diffusion depth were calculated at 632.8nm using the prism coupling method. From these results, the best Ti thickness in our conditions seems like to by 1200$\AA$~1300$\AA$.

  • PDF