Ngokusebenzisa izakhiwo ezincinci, isigaba sokudlulisa ukukhanya esidlula kwi-diffractive optical element (DOE) siyatshintshwa, ngaloo ndlela kuvumela ukuguquguquka kwesigaba sokukhanya okwenzekayo. Oku kubangela ukuba ukukhanya kusasazeke kwiindlela ezahlukeneyo zokukhanya. Ukusebenzisa olu phawu, ngokucwangcisa imiyalelo yokukhanya kunye nomgama wezinto, ukuphazamiseka kwenzeka kwindawo ethile (ngesiqhelo kwi-infinity okanye kwi-focal plane yelensi), okubangela ukusasazwa kokukhanya okuthile.
Le Diffractive Optical Element (DOE) esebenza kakuhle yenzelwe ngokukodwa usetyenziso lwe-laser eluhlaza ye-532nm. Iguqula ngokufanelekileyo imisebe ye-laser eqhelekileyo yeGaussian ibe yindawo efanayo, ejikelezileyo ye-Φ60 µm ethe tyaba eneprofayili ezimphetho ezinde kunye neendawo ezincinci ezishushu.
Yenzelwe iprofayili yesigaba se-16, le beam shaper ifumana ukusebenza kakuhle kwe-diffraction epheleleyo engaphezulu kwe-90% kunye ne->90% yamandla afanayo (RMS). Oku kuqinisekisa iziphumo ezihambelanayo nezisemgangathweni ophezulu kwizicelo ezibalulekileyo ezifana ne-laser micromachining, i-thin-film processing, i-laser marking, kunye ne-biomedical device manufacturing.
I-DOE inobubanzi obuqhelekileyo be-Φ25.4 mm (1-intshi) obunomngxuma ocacileyo we-Φ12 mm kunye nobukhulu be-2mm, okuvumela ukuhlanganiswa okungenamthungo kwiindawo ezininzi zokufakelwa kwe-optomechanical, amavili okucoca, kunye neenkqubo zelaser.
Ubude be-wavelength bugxile ekuboneleleni ngeemveliso zokukhanya ezichanekileyo kakhulu kangangeminyaka engama-20