48
Views
0
CrossRef citations to date
0
Altmetric
Articles

Experimental study on two-lens slit filtering

ORCID Icon
Pages 531-536 | Received 17 Mar 2020, Accepted 21 Apr 2020, Published online: 12 May 2020

References

  • Juskaitis R, Wilson T, Reinholz F. Spatial filtering by laser detection in confocal microscopy. Opt Lett. 1993;18(14):1135–1137.
  • Dane BC, Harris FB, Taranowski JT, et al. inventor. Active beam delivery system with image relay. United States patent US7851725. 2010 Dec 14.
  • Sharma AK, Patidar RK, Daiya D, et al. Simple and sensitive technique for alignment of the pinhole of a spatial filter of a high-energy, high-power laser system. Appl Opt. 2013;52(12):2546–2554.
  • Ma Y, Wang X, Leng J, et al. Coherent beam combination of 1.08 kW fiber amplifier array using single frequency dithering technique. Optics & Lasers in Engineering. 2011;49(8):1089–1092.
  • Murray JE, Milam D, Boley CD, et al. Spatial filter pinhole development for the National Ignition facility. Appl Opt. 2000;39(9):1405–1420.
  • Pearlman JS, Anthes JP. Closure of pinholes under intense laser radiation. Appl Opt. 1977;16(8):2328–2331.
  • Dimakov SA, Zavgorodneva SI, Koval’chuk LV, et al. Investigation of the threshold of formation of a plasma screening radiation in a spatial filter. Sov J Quantum Electron. 1989;19(6):803–805.
  • Celliers PM, Estabrook KG, Wallace RJ, et al. Spatial filter pinhole for high-energy pulsed lasers. Appl Opt. 1998;37(12):2371–2378.
  • Murray JE, Downs DC, Hunt JT, et al. Off-axis multipass amplifier as a large aperture driver stage for fusion lasers. Appl Opt. 1981;20(5):826–834.
  • Murray JE, Milam D, Boley CD, et al. Pinhole closure measurements. Proc SPIE. 1999;3492:504–509.
  • Murray JE, Estabrook KG, Milam D, et al. Spatial filter issues. Proc SPIE. 1996;3047:207–212.
  • Sato S, Ashida H, Miyagi M, et al. Vacuum-cored hollow waveguide for transmission of high-energy, nanosecond Nd:YAG laser pulses and its application to biological tissue ablation. Opt Lett. 2000;25(1):49–51.
  • Xiong H, Gao F, Zhang X, et al. Characteristics and performance of a two-lens slit spatial filter for high power lasers. Opt Commun. 2017;390:16–21.
  • Jin C. Generation of an isolated attosecond pulse in the far field by spatial filtering with an intense few-cycle mid-infrared laser. Phys Rev A. 2011;84(4):77–92.
  • Bettinger A, Charles C, Osmalin J, et al. Laser beam brightness improvement with high power spatial filtering. Opt Commun. 1976;18(1):176–177.
  • Maigyte L, Staliunas K. Spatial filtering with photonic crystals. Appl Phys Rev. 2015;2(1):1–17.
  • Goodman JW. Introduction to Fourier optics. 2nd Ed. New York (NY): McGraw-Hill Press; 1996.
  • Pang H, Yin S, Deng Q, et al. A novel method for the design of diffractive optical elements based on the Rayleigh–sommerfeld integral. Optics & Lasers in Engineering. 2015;70:38–44.
  • Fleck JA, Morris JR, Bliss ES. Small-scale self-focusing effects in a high power glass laser amplifier. IEEE J Quantum Electron. 2003;14(5):353–363.
  • Porras MA. Experimental investigation on aperture-diffracted laser beam characterization. Opt Commun. 1994;109(1-2):5–9.
  • Gonzalezmartin O, Vaughan S. X-ray variability of 104 active galactic nuclei. XMM-Newton power-spectrum density profiles. Astron Astrophys. 2012;544(4-6361):453–478.
  • Armstrong JW, Cordes JM, Rickett BJ. Density power spectrum in the local interstellar medium. Nature. 1981;291(5816):561–564.
  • Stewart ED, Gong JO. The density perturbation power spectrum to second-order corrections in the slow-roll expansion. Phys Lett B. 2001;510(1):1–9.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.