2013
DOI: 10.1016/j.optcom.2013.08.023
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The far-field structure of Gaussian light beams transformed by internal conical refraction in a biaxial crystal

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Cited by 13 publications
(15 citation statements)
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“…As a consequence, the center of the CR beam will possess always the same SOP as the input beam. This fact, that was already pointed out in [62,63,65], will be discussed with more detail below. To obtain the Stokes parameters of the CR beam, Eqs.…”
Section: Stokes Vector Formalismmentioning
confidence: 51%
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“…As a consequence, the center of the CR beam will possess always the same SOP as the input beam. This fact, that was already pointed out in [62,63,65], will be discussed with more detail below. To obtain the Stokes parameters of the CR beam, Eqs.…”
Section: Stokes Vector Formalismmentioning
confidence: 51%
“…Although being the case of a Gaussian input beam the most studied situation in CR for cylindrically symmetric beams [33,[61][62][63][64][65][66][67][68][69], other works have investigated CR for Laguerre-Gauss beams [70,71] and for top-hat beams [72].…”
Section: Diffractive Solution 221 Cylindrically Symmetric Solutionmentioning
confidence: 99%
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“…Many studies about Bessel beam in optical domain have been done. In millimeter‐wave band, as both Gaussian beam and the zero‐order Bessel beam have the maximal in the central and have axial symmetry electric field distribution, Gaussian beam is very suitable to convert to Bessel beam with high efficiency …”
Section: Introductionmentioning
confidence: 99%
“…In millimeter-wave band, as both Gaussian beam and the zero-order Bessel beam have the maximal in the central and have axial symmetry electric field distribution, Gaussian beam is very suitable to convert to Bessel beam with high efficiency. [2][3][4] In optical domain, Bessel beam is generated by using the spatial light modulator, the circular slit, the axicon, and the hologram. [5][6][7][8] The spatial light modulator system is complex to realize.…”
Section: Introductionmentioning
confidence: 99%