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transmission diffraction grating t-1000-1040-31.8 × 12.3–94  (LightSmyth Technologies Inc)

 
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    Structured Review

    LightSmyth Technologies Inc transmission diffraction grating t-1000-1040-31.8 × 12.3–94
    Transmission Diffraction Grating T 1000 1040 31.8 × 12.3–94, supplied by LightSmyth Technologies Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/diffraction+grating/transmission+diffraction+grating+2+lightsmyth+t+1000+104060+%CC%8112+3+94/pmc11282245-145-13-19
    Average 90 stars, based on 1 article reviews
    transmission diffraction grating t-1000-1040-31.8 × 12.3–94 - by Bioz Stars, 2026-10
    90/100 stars

    Images

    Related Articles

    Transmission Assay:

    Article Title: Programmable generation of counterrotating bicircular light pulses in the multi-terahertz frequency range
    Article Snippet: .. The incident horizontally polarized laser pulse, compressed to ~12 fs, was diffracted by transmission diffraction grating (T-1000-1040-31.8 × 12.3–94, LightSmyth), with a high diffraction efficiency for both p- and s-polarization in the region spanning 800 nm to 1200 nm. ..

    Article Title: All-polarization-maintaining divided pulse fiber oscillator mode-locked with the optical Kerr effect
    Article Snippet: .. A polarization-insensitive transmission grating pair (LightSmyth T-1000-1040 Series) allows tunable dispersion management. ..

    Article Title: A two-color dual-comb system for time-resolved measurements of ultrafast magnetization dynamics using triggerless asynchronous optical sampling
    Article Snippet: .. The output of the YDFA is first compressed by two parallel-aligned transmission gratings (T-1000-1040-3212-95, LightSmyth) with a line density of 1000 lines/mm. ..

    Article Title: Custom fabrication and mode-locked operation of a femtosecond fiber laser for multiphoton microscopy
    Article Snippet: Ytterbium-doped single mode double clad fiber Thorlabs (USA) YB1200-6/125DC 3 m $202 7 μm mode field diameter (MFD; $67.30/m) Fiber collimators OZ Optics (Canada) LPC-08-1064-6/125S-1.6-7.5AS-60-X-12-HPC 2 $2,000 ($1,000 each) Passive double clad fiber (5/130 μm) ITF Technology MMC02112DF1 3 m Included with above combiner 4.8 μm MFD Single mode fiber (6/125 μm) OZ Optics LPC-08-1064-6/125S-1.6-7.5AS-60-X-12-HPC 1 m Included with above collimators 6.2 μm MFD .. Free-space isolator Thorlabs IO-5-1050-HP 1 $2,540 40 W max Polarizing beamsplitter Thorlabs PBS253 1 $222 Beamsplitter mount Thorlabs BSH1/M 1 $47 Quartz birefringent filter plate Newlight (Canada) BIR1060 1 $279 6 mm thick, 10 nm bandwidth Half waveplate Union Optics (China) WPZ2312 1 $75 Quarter waveplates Union Optics WPZ4312 2 $150 ($75 each) Waveplate rotation mount Thorlabs RSP1/M 4 $344 Mounts for the waveplates and the birefringent filter ($86 each) Extra-cavity pulse compression & optics Transmission diffraction grating 1 LightSmyth (USA) T-1000-1040-321294 1 $395 31.8 mm ́ 12.3 mm Transmission diffraction grating 2 LightSmyth T-1000-104060 ́12.3-94 1 $795 60 mm ́ 12.3 mm Free-space isolator Thorlabs IO-3D-1050-VLP 1 $1,565 0.7 W max .. Index matching gel, adapters, mirrors, posts, mounts, and translational stage Thorlabs Part number (quantity): G608N3 (1), TR6-P5 (3), AD12NT (2), PFSQ20-03-M01 (1), PFSQ05-03M01 (1), KMS (1), KM100C (1), KM100CL (1), KM200S (1), LT1 (1), LT101 (1), UPH2-P5 (1), UPH3-P5 (2) $1,420 Breadboard Newport (USA) SA2-30X30 $654 Solid aluminum plate, 30 in. x 30 in. aPrices at the time of publication.

    Dispersion:

    Article Title: All-polarization-maintaining divided pulse fiber oscillator mode-locked with the optical Kerr effect
    Article Snippet: .. A polarization-insensitive transmission grating pair (LightSmyth T-1000-1040 Series) allows tunable dispersion management. ..

    other:

    Article Title: Normal-dispersion fiber optical parametric chirped-pulse amplification
    Article Snippet: As a step towards realizing this scalability, we construct a different 1.03-μm pump source, this one generating up to 4-μJ pulses with a 7-nm bandwidth, which we stretch to 150 ps using a grating stretcher (Lightsmyth T-1000-1040).



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    Image Search Results


    (A) Chemical structure of 1 ; (B) MicroED structure of 1 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 1 under TEM. Scale bar: 2 µm; (D) Packing diagram in 1 , viewed along b ‐ or c ‐ axis. Hydrogen bonding interactions were presented in orange dashed lines.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 1 ; (B) MicroED structure of 1 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 1 under TEM. Scale bar: 2 µm; (D) Packing diagram in 1 , viewed along b ‐ or c ‐ axis. Hydrogen bonding interactions were presented in orange dashed lines.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques:

    (A) Chemical structure of 9 ; (B) MicroED structure of 9 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 9 under TEM. Scale bar: 2 µm; (D) Weak C─H···O hydrogen bonding interaction for one molecule of 9 . (E) Packing diagram in 9 , viewed along the a ‐axis. Hydrogen bonding interactions were presented in blue dashed lines.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 9 ; (B) MicroED structure of 9 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 9 under TEM. Scale bar: 2 µm; (D) Weak C─H···O hydrogen bonding interaction for one molecule of 9 . (E) Packing diagram in 9 , viewed along the a ‐axis. Hydrogen bonding interactions were presented in blue dashed lines.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques:

    (A) Chemical structure of 2 ; (B) MicroED structure of 2 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 2 under TEM. Scale bar: 2 µm; (D) Polymorphic structures and packing diagram in 2 , viewed along b ‐axis. Hydrogen bonding interactions were presented in orange dashed lines. Hydrogen atoms not involved in contact were omitted for clarification.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 2 ; (B) MicroED structure of 2 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 2 under TEM. Scale bar: 2 µm; (D) Polymorphic structures and packing diagram in 2 , viewed along b ‐axis. Hydrogen bonding interactions were presented in orange dashed lines. Hydrogen atoms not involved in contact were omitted for clarification.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques: Clarification Assay

    (A) Chemical structure of 4 ; (B) MicroED structure of 4 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 4 under TEM. Scale bar: 2 µm; (D) Packing diagram in 4 , viewed along the a ‐axis. Hydrogen bonding interactions were presented in orange dashed lines.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 4 ; (B) MicroED structure of 4 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 4 under TEM. Scale bar: 2 µm; (D) Packing diagram in 4 , viewed along the a ‐axis. Hydrogen bonding interactions were presented in orange dashed lines.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques:

    (A) Chemical structure of 5 ; (B) MicroED structure of 5 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 5 under TEM. Scale bar: 2 µm; (D) Packing diagram in 5 , viewed along the a ‐axis. π‐π and hydrogen bonding interactions were presented in orange dashed lines.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 5 ; (B) MicroED structure of 5 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 5 under TEM. Scale bar: 2 µm; (D) Packing diagram in 5 , viewed along the a ‐axis. π‐π and hydrogen bonding interactions were presented in orange dashed lines.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques:

    (A) Chemical structure of 6 ; (B) MicroED structure of 6 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 6 under TEM. Scale bar: 2 µm; (D) Packing diagram in 6 , viewed along a ‐ or b ‐axis. Hydrogen bonding interactions were presented in orange dashed lines. π‐π interactions were presented in green dashed lines. Hydrogen atoms not involved in contact were omitted for clarification.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 6 ; (B) MicroED structure of 6 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 6 under TEM. Scale bar: 2 µm; (D) Packing diagram in 6 , viewed along a ‐ or b ‐axis. Hydrogen bonding interactions were presented in orange dashed lines. π‐π interactions were presented in green dashed lines. Hydrogen atoms not involved in contact were omitted for clarification.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques: Clarification Assay

    (A) Chemical structure of 7 ; (B) MicroED structure of 7 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 7 under TEM. Scale bar: 2 µm; (D) Packing diagram in 7 , viewed along the a ‐axis. Forms 1 and 2 were presented in purple and yellow, respectively. Hydrogen bonding interactions were presented in blue dashed lines.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 7 ; (B) MicroED structure of 7 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 7 under TEM. Scale bar: 2 µm; (D) Packing diagram in 7 , viewed along the a ‐axis. Forms 1 and 2 were presented in purple and yellow, respectively. Hydrogen bonding interactions were presented in blue dashed lines.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques:

    (A) Chemical structure of 8 ; (B) MicroED structure of 8 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 8 under TEM. Scale bar: 2 µm; (D) Packing diagram in 8 , viewed along the a ‐axis. Hydrogen bonding interactions were presented in blue and green dashed lines. Water molecules were colored in purple balls.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 8 ; (B) MicroED structure of 8 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 8 under TEM. Scale bar: 2 µm; (D) Packing diagram in 8 , viewed along the a ‐axis. Hydrogen bonding interactions were presented in blue and green dashed lines. Water molecules were colored in purple balls.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques:

    (A) Chemical structure of 3 ; (B) MicroED structure of 3 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 3 under TEM. Scale bar: 2 µm; (D) Packing diagram in 3 , viewed along the a ‐axis. Hydrogen bonding interactions were presented in orange and cyan dashed lines. Molecules were colored by their symmetries.

    Journal: Small (Weinheim an Der Bergstrasse, Germany)

    Article Title: Rapid Structural Analysis of Natural Products Using MicroED

    doi: 10.1002/smll.202511875

    Figure Lengend Snippet: (A) Chemical structure of 3 ; (B) MicroED structure of 3 , 2F o ‐F c density map was shown in a blue mesh at 3σ contour level; (C) Representative diffraction pattern (658 mm) and crystal appearance (SA 5300x) of 3 under TEM. Scale bar: 2 µm; (D) Packing diagram in 3 , viewed along the a ‐axis. Hydrogen bonding interactions were presented in orange and cyan dashed lines. Molecules were colored by their symmetries.

    Article Snippet: The parallel beam (∼45.2% intensity) was tuned using a 500 nm diffraction grating replica (prod.# 673; Ted Pella, Inc.) and 70 μm objective aperture at the back focal plane.

    Techniques: