「diffraction of light」を含む例文一覧(1696)

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  • The diffraction grating part 21 separates the light beam outputted from a light source into a plurality of beams.
    回折格子部21は、光源より出力される光ビームを複数に分離させる。 - 特許庁
  • A diffraction efficiency of the positive primary diffracted light is higher than that of the negative primary diffracted light.
    +1次回折光の回折効率は−1次回折光の回折効率に比べて高い。 - 特許庁
  • The diffraction grating (23) is in route of generated light and is composed to form diffraction grating imageries after light passes through.
    回折格子(23)は、発生した光の経路内にあり、光が通過した後に回折格子像を生成するように構成される。 - 特許庁
  • To reduce the size of a wavelength-selective switching device by using diffraction of light.
    光の回折を用いて波長選択スイッチング装置のサイズを小さくする。 - 特許庁
  • By adjusting a tilting angle α of the second dichroic film according to an diffraction angle of the diffraction light, the diffraction light incident onto the image sensor 7R is shifted from the center of the screen.
    第二ダイクロイック膜の倒れ角αを、回折光の回折角に応じて調節することによって、イメージセンサ7Rに入射する回折光を画面中央から逸らす。 - 特許庁
  • At least part of each light scattering area 12a is covered with a light reflection layer, and diffraction light by Fraunhofer diffraction is generated from light incident to each light scattering area 12a.
    各光散乱領域12aの少なくとも一部を光反射層で覆い、各光散乱領域12aへの入射光からフラウンホーファー回折による回折光を発生させる。 - 特許庁
  • When the reference light is projected as read-out light, the diffraction light expressed by reverse image of the signal light is formed from the diffraction grating formed in the optical recording medium.
    参照光を読出し光として照射すると、光記録媒体に形成された回折格子から信号光の反転画像で表された回折光が生成する。 - 特許庁
  • To suppress the influence of diffraction of a laser beam at the edge of the light transmission part of a projection mask.
    投影マスク透光部のエッジによるレーザビームの回折の影響を抑制する。 - 特許庁
  • To provide an optical pickup which has a diffraction element to obtain diffraction light and can obtain desired diffraction light for optical beams of various wavelengths by using only one diffraction element without producing unnecessary diffraction light when optical beams of various wavelengths pass.
    回折光を得るために回折素子を備える光ピックアップ装置において、1つで複数の波長の光ビームについてそれぞれ目的の回折光が得られ、更に各波長の光ビームが通過した時に不要な回折光を生じない回折素子を備える光ピックアップ装置を提供する。 - 特許庁
  • Diffraction light other than zero-order light generated by the diffraction element 2 are not condensed onto an optical recording medium and the amount of light condensed to the focus of the zero-order light decreases.
    回折素子2によって生じる0次光以外の回折光は、光記録媒体上に集光することはなく、0次光の焦点に集光する光の量が低下する。 - 特許庁
  • To provide micromirrors to minimize light diffraction along the direction of switching and more particularly light diffraction into the acceptance cone of a collection optics.
    切換方向における光の回折、より具体的には集光系の受光コーンへの光の回折を最小化するマイクロミラーを提供する。 - 特許庁
  • The diffusion layer 15 suppresses diffraction of light caused by plural pixels.
    拡散層15は、複数の画素に起因する光の回折を抑制する。 - 特許庁
  • A diffraction lattice 7 is formed on a light emitting surface of the surface emitting laser 100.
    面発光レーザ100の発光面に回折格子を形成する。 - 特許庁
  • A part of the primary diffraction light L1 due to the diffraction lattice 7 is reflected by a clad 22 of the optical fiber 200 and received by a light receiving surface of the photodiode 110.
    回折格子7による1次回折光L1の一部は、光ファイバ200のクラッド22で反射した後にフォトダイオード110の受光面で受光される。 - 特許庁
  • The stray light interference fringe produced on a light receiving surface of the optical detector 17 by phase modulation operation of the diffraction grating 12 is subdivided by the diffraction operation by the diffraction grating 20.
    回折格子12の位相変調作用によって光検出器17の受光面上に生じる迷光干渉縞は、回折素子20による回折作用によって細分化される。 - 特許庁
  • The light intensity of the diffraction light 19 is weaker than that of the inspection light 17, and becomes weaker as it becomes close to the rear surface 11c.
    回折光19は、検査光17よりも光強度が弱く、裏面11cに近くなるほど更に弱くなる。 - 特許庁
  • The light receiving element 11 receives primary diffraction light diffracted by the diffraction grating 6 out of the reflected beams from the optical recording medium 80.
    受光素子11は光記録媒体80からの反射光束のうち透過型回折格子6による1次回折光を受光する。 - 特許庁
  • To provide a transmission electron microscope capable of generating a high precision diffraction pattern, by shielding light at central spot of the diffraction pattern.
    回折像の中心スポットを遮光して、高精度の回折像が得られる透過型電子顕微鏡を提供する。 - 特許庁
  • To solve a problem in which a conventional stack type diffraction optical element is insufficient in suppression of flare light of unnecessary diffraction order.
    従来の積層型の回折光学素子は、不要回折次数のフレア光の抑制に関しては不十分である。 - 特許庁
  • The light dispersing element 3 is a transmission type diffraction element constituted of a diffractive optical element or a holographic optical element of a diffraction grating, etc.
    分光素子3は、回折格子などのDOE、又はHOEで構成された、透過型の回折素子である。 - 特許庁
  • To provide a diffraction grating capable of varying the light quantity ratio of zero order diffracted light and higher order diffracted light and to provide a recording and reproducing device using this diffraction grating.
    0次回折光と高次回折光との光量比率が可変できる回折格子の提供および前記回折格子を用いた記録再生装置の提供。 - 特許庁
  • To improve efficiency of a light emitting element by arranging a diffraction structure different from a conventional diffraction structure on a light extraction surface side of the light emitting element such as an organic electroluminescent element.
    有機エレクトロルミネッセンス素子等の発光素子の光取出し面側に従来の回折構造とは異なる回折構造を配置して発光素子の高効率化を図る。 - 特許庁
  • To obtain a diffraction grating for two wavelengths capable of keeping the O-order diffraction efficiency of one out of two kinds of wavelengths of incident light maximum and constant and keeping the O-order diffraction efficiency of the other variable.
    入射する2種の波長の光の一方は0次回折効率を最大で一定に保ち、他方は0次回折効率を変化できる2波長用回折格子を得る。 - 特許庁
  • This intensity measuring method of the single-wavelength light in the EUV domain includes spectral diffraction of EUV light by a diffraction grating, entrance of the spectrally-diffracted light into a multilayer film mirror, reflection of the single-wavelength light, and measurement of the reflected light intensity.
    EUV光を回折格子により分光し、分光された光を多層膜ミラーに入射し、単波長光を反射し、その反射光強度を測定することを含む、EUV領域の単波長光の強度測定方法。 - 特許庁
  • The reflecting zero-order light of the diffraction grating 2 deviates from the light source 1 in the direction of the X-axis, and the diffracted reflecting n-order light (n≠0) faces in the vertical direction to the diffraction groove (in the direction of the Y-axis), and thereby the diffraction grating reflecting light does not return to the light source 1.
    回折格子2の反射0次光は、光源1からX軸方向にずれ、回折された反射n次光(n≠0)は、回折溝方向に対して直交方向(Y軸方向)にあるため、回折格子反射光は光源1に戻らない。 - 特許庁
  • An optical device 10 has a diffraction grating 11, and a light deflector 12 on the surface p2 side of the diffraction grating 11.
    光デバイス10は、回折格子11と、回折格子11の面p2側に光偏向装置12を有する。 - 特許庁
  • The light receiver is a TDI type light receiving element, and light-receives a diffraction image with a diffraction direction inclined by an angle of θ to an X axis in an XY plane from the diffraction element.
    受光器は、TDI型の受光素子であり、回折素子からの回折像が、その回折方向がXY面内でX軸方向に対して角度θ傾斜した状態で受光される。 - 特許庁
  • The spherical calcium aluminate has the uniformity of particle degree (D90/D10) of 4 or less; the uniformity (D90/D10)={particle diameter (μm) of 90%/10% measured by dry laser diffraction light scattering method}.
    式1による均一度(D_90/D_10)が、4以下である球状カルシウムアルミネート。 - 特許庁
  • Thus, spread of light reflection caused by diffraction is suppressed to improve the light use efficiency.
    これにより、回折による光反射の広がりを抑制し、光利用効率を高めることができる。 - 特許庁
  • The diffraction grating 28 is formed into a Littrow structure, in which the light is reflected in the same direction as that of the incident light.
    回折格子28は入射光と同一方向に光を反射するリトロー構成とする。 - 特許庁
  • Thereby the polarization hologram element does not generate diffraction light of the return light from the non-target layer.
    これにより、偏光ホログラム素子は、目的外層からの反射光の回折光を生成しない。 - 特許庁
  • To provide a semiconductor light-emitting element that is enhanced in diffraction efficiency of projection light.
    出射光の回折効率を向上させることが可能な半導体発光素子を提供する。 - 特許庁
  • The device has a prism provided between the semiconductor laser and the diffraction grating for enlarging the beam shape of the light from the semiconductor laser in the groove arrangement direction of the diffraction grating, emitting the light to the diffraction grating, and reflecting diffracted light from the diffraction grating to provide the output light.
    本装置は、半導体レーザと回折格子との間に設けられ、半導体レーザからのビーム形状を回折格子の溝の配列方向に拡大して回折格子に出射し、回折格子からの回折光を反射して出力光とするプリズムを設けたことを特徴とするものである。 - 特許庁
  • The frame part 1p on the periphery of the light shielding cap 1 blocks diffraction of light from the surroundings of the recording medium 2.
    遮光キャップ1の周辺の枠部1pは、記録媒体2の周辺からの光の回り込みを阻止する。 - 特許庁
  • This light guide panel 20 emits an incident light after scattered or/and diffracted in the plurality of light scattering diffraction areas 22, while guiding the light within a thickness range thereof, and the light scattering diffraction areas 22 are constituted to make a light non-scattering non-diffraction clearance of forming a clearance with respect to the adjacent light scattering diffraction area 22 less than 90 μm.
    入射した光を厚み内で導光しながら、複数の光散乱回折領域22で散乱或いは/及び回折させて出射させる導光板20であって、前記光散乱回折領域22は、隣接する光散乱回折領域22との間隙をなす光非散乱非回折間隙を90μm未満としてある。 - 特許庁
  • A diffracted light of zeroth order L0 generated in the first VPH diffraction grating (transmission type VPH diffraction grating 2a) is incident on the second VPH diffraction grating (transmission type VPH diffraction grating 2b).
    第1のVPH回折格子(透過型VPH回折格子2a)で生じる0次回折光L0を、第2のVPH回折格子(透過型VPH回折格子2b)に入射させる。 - 特許庁
  • In the diffraction grating 24, grating grooves constituting the diffraction grating are formed almost in parallel to the longitudinal direction of the light incident end surface 21a of the light guide plate 21.
    回折格子24は、回折格子を構成する格子溝が導光板21の入光端面21aの長手方向と略平行に形成されている。 - 特許庁
  • DIFFRACTION TYPE CONVERGING DEVICE USING A PLURALITY OF SELECTIVE LIGHT-NONTRANSMISSIVE ELEMENTS
    選択的光不透過性素子を複数使用する回折式集束装置 - 特許庁
  • The use light of AOD 9a, DVD 9b and CD 9c are made incident as parallel light and the second-order diffraction light (λ1), first-order diffraction light (λ2) and first-order diffraction light (λ3) respectively outputted from L_1 are converged onto the prescribed optical recording medium.
    AOD9a、DVD9b、CD9cの各使用光は平行光として入射され、各々L_1から出力された2次回折光(λ1)、1次回折光(λ2)、1次回折光(λ3)を所定の光記録媒体上に集光せしめる。 - 特許庁
  • Further, diffraction efficiency I1 of primary diffracted light can be held nearly constant for respective wavelengths in the visible light range, and diffraction efficiency I0 of diffracted light of (0)th order can be made small.
    また、可視光領域の各波長に対して1次回折光の回折効率I_1を略一定に保つことができ、0次回折光の回折効率I_0を少なくすることができる。 - 特許庁
  • To provide an optical switch capable of making its size so small as to exceed the diffraction limit of light.
    光スイッチのサイズを、光の回折限界を超えて小型化できるようにする。 - 特許庁
  • To impart full contrast to the intensity distribution of diffracted light of a three-dimensional diffraction grating.
    3次元回折格子の回折光の強度分布に完全なコントラストをつける。 - 特許庁
  • To provide a near-field waveguide of very small size exceeding diffraction limits of light.
    光の回折限界を超えた微小サイズの近接場導波路を提供する。 - 特許庁
  • The diffraction angle for each wavelength is uniformized; thus, the lowering of the utilization efficiency of light is avoided.
    波長毎の回折角度を均一化し、光の利用効率低下を回避する。 - 特許庁
  • The diffraction lens structure formed in a center area Rc is designed so that the diffraction efficiency of primary diffraction light may become the largest for two wavelengths.
    中心領域Rcに形成された回折レンズ構造は、2波長について1次の回折光の回折効率が最大となるように設計されている。 - 特許庁
  • One of light receiving parts detects zero-th order diffraction light which is defined as a reproduction signal; and a light-receiving part for a focus error signal and a tracking error signal is disposed outside the zero-th order diffraction light of stray light from an the other layer.
    再生信号である0次格子回折光を1つの受光部で検出し、他層迷光の0次格子回折光よりも外側に、フォーカス誤差信号・トラッキング誤差信号用の受光部を配置する。 - 特許庁
  • The emitted light center wavelength of a red light source at a long-wavelength end, the emitted light center wavelength of a blue light source at a short- wavelength side end, and the diffraction efficiency of the diffraction optical surface of an eyepiece optical system are set as follows.
    長波長端の赤色光源の発光中心波長と短波長側端の青色光源の発光中心波長および接眼光学系の回折光学面の回折効率が以下の様に設定される。 - 特許庁
  • The diffraction grating 14 disperses light to be measured by wavelength dispersion and emits diffraction light of the selected wavelength while turning to the specific direction.
    回折格子14は、被測定光を波長分散して分光し、一定方向に回転して選択した波長の回折光を生成する。 - 特許庁
  • An optical spectrum monitor has a diffraction means 3 for diffracting light to be measured, at an angle of diffraction according to the sweeping of an optical spectrum, receives primary diffracted light by the diffraction means 3; converts it into electric signals according to the amount of received light; and outputs it.
    光スペクトルモニタは、光スペクトルの掃引に応じた回折角で被測定光を回折する回折手段3を有し、回折手段3による1次回折光を受光し、受光量に応じた電気信号に変換出力する。 - 特許庁
  • At least one of the plurality of diffraction regions has a pattern which gives coma-aberration in the track direction to the diffraction light.
    複数の回折領域のうちの少なくとも1つは、回折光に、トラック方向のコマ収差を与えるパターンを有する。 - 特許庁
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