「diffracted light」を含む例文一覧(1000)

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  • A master disk in this invention generates first diffracted light 36a that is diffracted in the vertical direction to the master disk and first diffracted light 36b that is diffracted in the diagonal direction to the master disk due to the incidence of reproducing light 35 from a specific direction.
    本発明の原盤は、特定の方向からの再生光35の入射により、原盤に対して垂直方向に回折する1次回折光36aと、原盤に対して斜め方向に回折する1次回折光36bを生成する。 - 特許庁
  • Three reflected light from the disk is diffracted as +1st-order diffracted light by a hologram optical element 8 and is received by a photodetector.
    ディスクからの3つの反射光はホログラム光学素子8で+1次回折光として回折され、光検出器で受光される。 - 特許庁
  • For the front monitor, the first-order diffracted light (the outputted first-order diffracted light) of the element of a hologram laser is utilized which has so far not utilized.
    これまでは利用していなかったホログラムレーザのホログラム素子の1次回折光(出射1次回折光)を、フロントモニタに使用する。 - 特許庁
  • The optical pickup 50 forms a zero order diffracted light and ±1st order diffracted light and irradiates the optical disk 80 therewith.
    光ピックアップ50は、回折格子により0次回折光および±1次回折光を生成して光ディスク80に対して照射する。 - 特許庁
  • The number of light diffracted by syncCGH 3a is different in the array direction, and the number of diffracted light indicates the position of information CGH 3a.
    syncCGH3bが回折する光の数が配列方向に異なり、回折光の数が情報CGH3aの位置を表す。 - 特許庁
  • The P polarized light component 7P in this diffracted light 7 is detected by a photodetector 43.
    この回折光7中のP偏光成分7Pを光検出器43で検出する。 - 特許庁
  • The second return light diffracted by the diffraction grating is received as wavelength analysis light.
    回折格子で回折された第2の復路光を波長解析用光として受光する。 - 特許庁
  • COMPARISON METHOD OF LIGHT INTENSITY DISTRIBUTION DATA OF DIFFRACTED/SCATTERED LIGHT, AND PARTICLE SIZE DISTRIBUTION MEASURING DEVICE
    回折・散乱光の光強度分布データの比較方法、および粒度分布測定装置 - 特許庁
  • The optical pickup device 1 is provided with a semiconductor laser 4 which oscillates laser with which the optical disk 2 is irradiated, a hologram 3 which diffracts the laser light reflected upon the optical disk 2 and generates primary diffracted light 6 and secondary diffracted light 8, a light receiving part 5 which receives the primary diffracted light 6 and a light receiving part 7 which receives the secondary diffracted light 8.
    光ピックアップ装置1は、光ディスク2に照射するレーザを発振させる半導体レーザ4と、光ディスク2で反射したレーザを回折させて1次回折光6と、2次回折光8とを生じさせるホログラム3と、1次回折光6を受光する受光部5と、2次回折光8を受光する受光部7とを備える。 - 特許庁
  • An outgoing light from a light source is divided by a diffraction optical element 3a into a main beam which is a zero-order light, a 1st sub-beam which is a +1st order diffracted light, and a 2nd sub-beam which is a -1st order diffracted light.
    光源からの出射光を回折光学素子3aにより0次光であるメインビーム、+1次回折光である第一のサブビーム、−1次回折光である第二のサブビームに分割する。 - 特許庁
  • Each pixel is switchable between a first mode in which incident light is outputted as the zero-th order diffracted light and a second mode in which incident light is outputted as higher order diffracted light.
    各画素は入射光をゼロ次回折光として出力する第1のモードと、入射光をより高次の回折光として出力する第2のモードとの間で切り換え可能である。 - 特許庁
  • The diffraction area 601 generates the -one order diffracted light beam D1a, and the diffraction area 602 generates the +one order diffracted light beam D1b.
    回折領域601は−1次回折光ビームD1aを生成し、回折領域602は+1次回折光ビームD1bを生成する。 - 特許庁
  • The PD 114 is provided with a quadripartite sensor which receives the 0-th order diffracted light beam, and two sets of tripartite sensors which receive the ± primary diffracted light beams.
    PD114は0次回折光を受光する4分割センサーと、±1次回折光を受光する2組の3分割センサーを備える。 - 特許庁
  • When the piezoelectric element is not driven by the shutter driver 31a, since the incident light is not diffracted, the first-order diffracted light will not be emitted.
    シャッタドライバ31aにより圧電素子が駆動されない場合には、入射光は回折されないので1次回折光は出射されない。 - 特許庁
  • Then, a focus error signal is generated from the diffracted light in the convergence state and a tracking error signal is generated from the diffracted light in the blurred state.
    そして、収束状態の回折光からフォーカス誤差信号を生成し、ぼけた状態の回折光からトラッキング誤差信号を生成する。 - 特許庁
  • Information light 21 including zero-order diffracted light and first and higher order diffracted light generated according to the information to be recorded is converged onto a recording medium 16 containing a hologram recording layer 18, so that interference fringes produced by interference between the 0-order diffracted light and higher-order diffracted light is recorded on the hologram recording layer 18.
    ホログラム記録層18を含む記録媒体16上に、記録すべき情報に基づいて生成される0次回折光と1次以上の高次回折光を含む情報光21を集光させ、ホログラム記録層18上に0次回折光と高次回折光との干渉により生じる干渉縞を記録する。 - 特許庁
  • By the fifth fundamental structure, the zero-order diffracted light is produced most frequently from a first light beam having a first wavelength; the zero-order diffracted light is produced most frequently from a second light beam having a second wavelength; and the G-order diffracted light is produced most frequently from a third light beam having a third wavelength.
    第5基礎構造は、第1波長の第1光束で0次の回折光を最も多く発生し、第2波長の第2光束で0次の回折光を最も多く発生し、第3波長の第3光束でG次の回折光を最も多く発生する構造である。 - 特許庁
  • The transmitted light is diffracted by the displacement grid 42 and further diffracted by the stationary grid 40 to enter the photodetecting element 44.
    透過光は、変位格子42で回折し、さらに固定格子40で回折して受光素子44に入射する。 - 特許庁
  • On the other hand, 0 order diffracted light λ_02 different from the 1st order diffracted light λ_12 of the rays of light which has passed the grating 12 is made incident on an output place monitoring device 200.
    一方、出力先モニタ装置200には、グレーティング12を通過した光のうち、1次回折光λ_12とは異なる0次回折光λ_02が入射する。 - 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
  • The zero order diffracted light and/or first order diffracted light produced by the reproducing light with which the information recording section 10 is irradiated is detected in reproducing the information.
    この情報の再生時には、情報記録部10に対して照射された再生光により生じる0次回折光及び/又は1次回折光を検出する。 - 特許庁
  • An optical sensor means is allowed to be irradiated with the diffracted light through a light quantity filter means 6 of which transmissivity is made different in the radial direction of beam sectional plane of the diffracted light.
    回折光のビーム断面半径方向に透過率が異なるようにした光量フィルタ手段6を介して、回折光が光センサ手段に照射されるようにする。 - 特許庁
  • In this spectrometer, parallel light from a collimator lens 16 is diffracted by a holographic grating 18, and the diffracted light (first diffraction light) is incident on an echellette grating 19.
    コリメートレンズ16からの平行光はホログラフィックグレーティング18によって回折され、この回折された回折光(第1の回折光)はエシェルグレーティング19に入射する。 - 特許庁
  • The diffraction grating 15a transmits light in the band of 780 nm while the diffraction grating 15b divides the light into zero-order light and ±one-order diffracted light.
    780nm帯の光は回折格子15aは透過し、回折格子15bで0次光、±1次回折光に分割される。 - 特許庁
  • The diffraction grating 15a divides light in the band of 650 nm into zero-order light and ±one-order diffracted light while the diffraction grating 15b transmits the light.
    650nm帯の光は回折格子15aで0次光、±1次回折光に分割され、回折格子15bは透過する。 - 特許庁
  • To intercept diffracted light other than 0th-order light emitted from a reflection type light valve in a projection type display device.
    投射型表示装置で反射型ライトバルブから射出される0次光以外の回折光を遮断する。 - 特許庁
  • The incident white light is separated into light having wavelength λ_1, which is diffracted with a Dammann type diffraction grating 401 of the first color separation plate 102, light having a wavelength λ_2 and passes without being diffracted, and a light having wavelength λ_3 which is diffracted in the opposite direction of the light having the wavelength λ_1.
    入射された白色光は、第1の色分解板102のダンマン型回折格子401により回折する波長λ_1の光、回折せずに透過する波長λ_2、λ_1とは逆に回折する波長λ_3の光に色分解される。 - 特許庁
  • To uniformize the light quantity distribution of diffracted light on a two-dimensional photosensor during reproducing a hologram memory.
    ホログラムメモリ再生時の回折光の2次元光センサ上での光量分布を均一化する。 - 特許庁
  • Reflected EUV light 203 (including diffracted EUV light) proceeds towards an intermediate focal point IF.
    EUV反射光203(EUV回折光を含む)は、中間集光点IFに向けて進む。 - 特許庁
  • The reflected EUV light 203 (including diffracted EUV light) proceeds towards an intermediate focal point IF.
    EUV反射光203(EUV回折光を含む)は、中間集光点IFに向けて進む。 - 特許庁
  • The diffracted light output of the +1st order of the optical modulator fetches the light in the direction of an arrow C1.
    光変調器の+1次の回折光出力は、矢印Cの向きの光を取り出す。 - 特許庁
  • To provide a semiconductor light emitting element which can efficiently extract specific diffracted light.
    特定の回折光を効率良く取り出すことができる半導体発光素子を提供する。 - 特許庁
  • The 1st light having the wavelength λ1 and the 2nd light having the wavelength λ2 are diffracted by the diffraction element.
    回折素子は、波長λ1の第1の光と、波長λ2の第2の光とを回折させる。 - 特許庁
  • The returning light M diffracted as the negative 1st order refraction lights Mc is made incident on a light receiving element 7.
    −1次回折光Mcとして回折された復路光Mは、受光素子7に入射する。 - 特許庁
  • To increase the minimum light intensity out of light intensities to a maximum out of five light spots when a laser beam from a semiconductor laser is diffracted by a diffraction grating face on a diffraction grating plate so as to generate zero-order diffracted light to second-order diffracted light in such a way that the five light spots are generated from the diffracted lights so as to be shone at different places on an optical disk.
    半導体レーザ12からのレーザ光を回折格子板18の回折格子面20により回折して、0〜2次の回折光を生成し、これらより5個の光スポットM,E,F,G,Hを生成して、光ディスク34の異なるトラック部位へ照射する光ピックアップ装置10において、光スポットM,E,F,G,Hの内で光強度の最小のものの光強度を最大現、引き上げる。 - 特許庁
  • A waveguide body which guides diffracted light generated by diffracting incident laser light, while totally reflecting the diffracted light is disposed in an analyte, and a refractive index is detected on the basis of a phase change occurring in the diffracted light due to total reflection.
    入射されたレーザ光を回折させることにより生じさせた回折光を全反射させながら導く導波体を、被検体内に配設して、全反射にともなって回折光に生じる位相変化に基づいて屈折率を検出する。 - 特許庁
  • The diffracted light 3 is made to be incident on a polarizing plate 52 and the intensity of the diffracted light 4 passed through the polarizing plate 52 is detected with a photodetector 53.
    その回折光3を偏光板52に入射させ、偏光板52を透過した回折光4の強度を光検出器53で検出する。 - 特許庁
  • To provide an acoustooptical modulator with very small crosstalk between diffracted light and non-diffracted light of an optical signal made incident on an optical fiber on the outgoing side.
    出射側の光ファイバに入射する光信号の回折光と非回折光とのクロストークの極めて小さい音響光学変調器を得る。 - 特許庁
  • Return light L1r, L2r is guided to the common light-receiving element 11 as +1st order diffracted ray L1r (+1), +2nd order diffracted ray L2r (+2) respectively.
    戻り光L1r、L2rはそれぞれ、+1次回折光L1r(+1)、+2次回折光L2r(+2)として共通受光素子11に導かれる。 - 特許庁
  • Collimated collimate light 4 is diffracted by a diffraction grating 5 while the diffracted diffraction light impinges against the semiconductor laser 1 through the collimate lens 3.
    コリメートされたコリメート光4は、回折格子5で回折され、回折された回折光はコリメートレンズ3を通って半導体レーザ1に入射される。 - 特許庁
  • The device 200 recognizes the output place of the 1st order diffracted light λ_12 by which position of the the sensor 24 the 0 order diffracted light λ_02 is received.
    この出力先検知用受光センサ24のどの位置に0次回折光λ_02が受光したかにより、1次回折光λ_12の出力先を認識する。 - 特許庁
  • Since the reflected EUV light 204 (including diffracted EUV lights) and the light 302 of other wavelengths are reflected or diffracted at different angles, their traveling directions are different.
    EUV反射光204(EUV回折光を含む)と、他の波長の光302とは、反射角度または回折角度が異なるため、進行方向が異なる。 - 特許庁
  • The ± first order diffracted light and zero-order diffracted light from the diffraction element 10 are made incident on a photodetector 13 through a cylindrical lens 11 and a spot lens 12.
    この回折素子10からの±1次回折光と0次回折光が、シリンドリカルレンズ11、スポットレンズ12を介して光検出器13に入射する。 - 特許庁
  • On the detection surface of the photodetector, sensors P21 to P28 which photo detect the diffracted light of the servo light SL and sensors P31 to P34 which photo detect the diffracted light of the recording and reproducing light RL1 are arranged.
    光検出器の検出面には、サーボ光SLの回折光を受光するセンサP21〜P28と、記録再生光RL1の回折光を受光するセンサP31〜P34が配されている。 - 特許庁
  • The prescribed light receiving element of the first-order diffracted light receiving part 37 and the prescribed light receiving element of the first-order diffracted light receiving part 38 are connected electrically through first to fourth switching parts 52 to 55.
    1次回折光受光部37の所定の受光素子と−1次回折光受光部38の所定の受光素子とは、第1〜第4スイッチ部52〜55を介して電気的に接続される。 - 特許庁
  • A light shielding member 33 is arranged at a position onto which diffracted light is focused in an imaging system 3, wherein the diffracted light occurs when illumination light irradiated to the standard grating 1 is reflected by the grating plane 11.
    基準格子1に照射された照明光が格子面11で反射されて生じる回折光の、結像系3内において集光する位置に、遮光手段33を配置する。 - 特許庁
  • A luminous flux input to the first diffraction grating is diffracted, and the diffracted light is input to the two-dimensional optical waveguide 20-1.
    第1回折格子に入力された光束は回折されてその回折光が2次元光導波路20-1に入力される。 - 特許庁
  • Photodetectors 50a and 50b are arranged at symmetrical positions for 0-order diffracted light diffracted by the diffraction grating 16.
    光ディテクタ50a,50bは、回折格子16によって回折された0次回折光に対して、対称な位置に配置される。 - 特許庁
  • The laser beam before division into signal light and reference light or laser light which is reference light passes through a diffracted state switching element and a light shielding element.
    信号光、参照光に区分される以前のレーザ光あるいは参照光たるレーザ光が、回折状態切換素子、光遮蔽素子を通過する。 - 特許庁
  • A first photodetection section of a photodetector is composed of a first zero-order diffracted light-receiving part for receiving zero-order diffracted light from a diffraction element 16 in a DVD optical beam and a first first-order diffracted light-receiving part for receiving plus and minus first-order diffracted light from the diffraction element 16 in the DVD optical beam.
    光検出器の第1の光検出部は、DVD光ビームにおける回折素子16からの0次回折光を受光する第1の0次回折光受光部と、DVD光ビームにおける回折素子16からの±1次回折光を受光する第1の1次回折光受光部とから構成される。 - 特許庁
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