Información básica
Volumen
V52 - N3 / 2019 Ordinario
Referencia
51027: 1-10
DOI
http://doi.org/10.7149/OPA.52.3.51027
Idioma
English
Etiquetas
Refracción cónica, cristalografía óptica, polarización, captura óptica, comunicaciones ópticas
Resumen
En 1832 Hamilton predijo que un haz colimado de luz propagándose a través de un cristal biáxico de manera paralela a uno de los ejes ópticos se refracta como un cono de luz en su interior y emerge como un cilindro hueco, siendo este fenómeno conocido como refracción cónica (CR). La solución basada en óptica difractiva de la CR fue presentada por Belsky y Khapalyuk en 1978 y reformulada por Berry en 2004. Este artículo, revisa el fenómeno de la CR y utiliza todas sus particularidades para describir diferentes aplicaciones de la CR en áreas como la captura óptica y las telecomunicaciones ópticas.
Referencias
W. R. Hamilton,"Third supplement to an essay on the theory of systems of rays,"Trans. R. Irish Acad.17, 1-144(1837).
M. V. Berry and M. R. Jeffrey,"Conical diffraction: Hamilton’s diabolical point at the heart of crystal optics,"Prog. Opt.50, 13-50(2007).
H. Lloyd,"On the Phenomena presented by Light in its Passage along the Axes of Biaxial Crystals," Philos. Mag.2, 112-120(1833).
A. Turpin, "Conical refraction: fundamentals and applications," Doctoral Thesis (2015).
A. Turpin, Yu. V. Loiko, T. K. Kalkandjiev, and J. Mompart, "Conical refraction: fundamentals and applications,"Laser Photon. Rev.10, 750-771 (2016).
T. K. Kalkandjiev and M. A. Bursukova,"Conical refraction: an experimental introduction,"Proc. SPIE 6994, 69940B (2008).
A. M. Belsky and A. P. Khapalyuk,"Internal conical refraction of bounded light beams in biaxial crystals,"Opt.Spectrosc.44,436-439(1978).
M. V. Berry,"Conical diffraction asymptotics: fine structure of Poggendorff rings and axial spike,"J. Opt. A: Pure Appl. Opt.6, 289-300(2004).
A. Turpin, J. Polo, Yu. V. Loiko, J. Küber, F. Schmaltz, T. K. Kalkandjiev, V. Ahufinger, G. Birkl, and J. Mompart, "Blue-detuned optical ring trap for Bose-Einstein condensates based on conical refraction,"Opt. Express 23, 1638-1650 (2015).
A. Turpin, V. Shvedov, C Hnatonsky, Yu. V. Loiko, J. Mompart, and W. Krolikowski, "Optical vault: a reconfigurable bottle beam based on conical refraction of light," Opt. Express,21, 26335–26340(2013).
A. Turpin, Yu. Loiko, T. K. Kalkandjiev, H. Tomizawa, and J. Mompart, "On the dual-cone nature of the conical refraction phenomenon," Opt. Lett.40, 1639-1642 (2015).
Yu. V. Loiko, A. Turpin, T. K. Kalkandjiev, E. U. Rafailov, and J. Mompart, "Generating a three-dimensional dark focus from a single conically refracted light beam," Opt. Lett.38, 4648-4651 (2013).
A. Turpin, Yu. V. Loiko, T. K. Kalkandkiev, H. Tomizawa, and J. Mompart,"Super-Gaussian conical refraction beam," Opt. Lett.39, 4349-4352 (2014).
A. Turpin, Yu. V. Loiko, A. Peinado, A. Lizana, T. K. Kalkandjiev, J. Campos, and J. Mompart, "Polarization tailored novelvector beams based on conical refraction," Opt. Express23, 5704-5715 (2015).
A. Turpin, Yu.V.Loiko, T.K.Kalkandjiev,andJ.Mompart, "Light propagation in biaxial crystals," J. Opt.17, 065603(2015).
A. Turpin, A. Vargas, A. Lizana, F. A. Torres-Ruiz, I. Estévez, I. Moreno, J. Campos, and J. Mompart, "Transformation of vector beams with radial and azimuthal polarizations in biaxial crystals," J. Opt. Soc. Am. A32, 1012-1016 (2015).
A. Turpin, Yu.V.Loiko, T.K.Kalkandjiev, R.Corbalán, J.Mompart, "Conical refraction healing after partially blocking the input beam," Phys. Rev. A92, 013802(2015).
M. V. Berry, "Conical diffraction from an N-crystalcascade,"J. Opt.12,075704(2010).
A. Turpin, Yu. V. Loiko, T. K. Kalkandjiev, and J.Mompart, "Multiple rings formation in cascaded conical refraction," Opt. Lett. 38, 1455-1457 (2013).
A. Turpin, Yu. V. Loiko, T. K. Kalkandjiev, H. Tomizawa, and J. Mompart, "Wave-vector and polarization dependence of conical refraction," Opt. Express 21, 4503-4511 (2013).
J. Arlt and M. J. Padgett, "Generation of a beam with a dark focus surrounded by regions of higher intensity:the optical bottle beam," Opt. Lett. 25, 191-193 (2000).
M. Woerdemann, C. Alpmann, M. Esseling, and C.Denz,"Advanced optical trapping by complex beam shaping,"Laser Photon.Rev.7, 1-16 (2012).
R. Grimm,M.Weidemüller,Y.B.Ovchinnikov"Optical Dipole Traps for Neutral Atoms,"Adv. At. Mol. Opt. Phys.42,95-170(2000).
V. Shvedov, A. R. Davoyan, C. Hnatovsky, N. Engheta, and W. Krolikowski,"A long-range polarization-controlled optical tractor beam," Nature Photon.8, 846-850(2014).
D. E. Smalley, E. Nygaard, K. Squire, J. Van Wagoner, J. Rasmussen, S. Gneiting, K. Qaderi, J. Goodsell, W. Rogers, M. Lindsey, K. Costner, A. Monk, M. Pearson, B. Haymore, andJ. Peatross, "A photophoretic-trapvolumetric display," Nature 553, 486-490 (2018).
B. T. Seaman, M. Krämer, D. Z. Anderson, and M. J. Holland,"Atomtronics: Ultracold-atom analogs of electronic devices,"Phys. Rev. A75, 023615 (2007).
A. Benseny, S. Fernández-Vidal, J. Bagudà, J. R. Corbalán, A. Picón, A. L. Roso, G. Birkl, and J. Mompart, Phys. Rev. A82,"Atomtronics with holes: Coherent transport of an empty site in a triple well potential," 013604 (2010).
A. Peinado, A. Turpin, C. Iemmi, A. Márquez, T. K. Kalkandjiev, J. Mompart, and J.Campos, "Interferometric characterization of the structured polarized light beam produced by the conicalrefraction phenomenon," Opt. Express 23, 18080-18091 (2015).
A. Turpin, Yu.Loiko, T.K. Kalkandjiev, and J.Mompart, "Free-space optical polarization demultiplexing and multiplexing by means of conical refraction," Opt. Lett. 37, 4197-4199 (2012).