Artículo

Varga, J.J.M.; Rebón, L.; Solís-Prosser, M.A.; Neves, L.; Ledesma, S.; Iemmi, C. "Optimized generation of spatial qudits by using a pure phase spatial light modulator" (2014) Journal of Physics B: Atomic, Molecular and Optical Physics. 47(22)
El editor solo permite decargar el artículo en su versión post-print desde el repositorio. Por favor, si usted posee dicha versión, enviela a
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

We present a method for preparing arbitrary pure states of spatial qudits, namely, D-dimensional (D ≥ 2) quantum systems carrying information in the transverse momentum and position of single photons. For this purpose, a set of D slits with complex transmission are displayed on a spatial light modulator (SLM). In a recent work we have shown a method that requires a single phase-only SLM to control independently the complex coefficients which define the quantum state of dimension D. The amplitude information was codified by introducing phase gratings inside each slit, and the phase value of the complex transmission was added to the phase gratings. After a spatial filtering process, we obtained in the image plane the desired qudit state. Although this method has proven to be a good alternative to compact the previously reported architectures, it presents some features that could be improved. In this paper we present an alternative scheme to codify the required phase values that minimizes the effects of temporal phase fluctuations associated to the SLM where the codification is carried out. In this scheme, the amplitudes are set by appropriate phase gratings addressed at the SLM, while the relative phases are obtained by a lateral displacement of these phase gratings. We show that this method improves the quality of the prepared state and provides very high fidelities of preparation for any state. An additional advantage of this scheme is that a complete 2π modulation is obtained by shifting the grating by one period; hence the encoding is not limited by the phase modulation range achieved by the SLM. Numerical simulations, that take into account the phase fluctuations, show high fidelities for thousands of qubit states covering the whole Bloch sphere surface. Similar analyses are performed for qudits with D = 3 and D = 7. © 2014 IOP Publishing Ltd.

Registro:

Documento: Artículo
Título:Optimized generation of spatial qudits by using a pure phase spatial light modulator
Autor:Varga, J.J.M.; Rebón, L.; Solís-Prosser, M.A.; Neves, L.; Ledesma, S.; Iemmi, C.
Filiación:Departamento de Física, FCEyN, Universidad de Buenos Aires, Buenos Aires, 1428, Argentina
Departamento de Física, IFLP, Universidad Nacional de La Plata, C.C. 67, La Plata, 1900, Argentina
Center for Optics and Photonics, Universidad de Concepción, Casilla 4016, Concepción, Chile
Departamento de Física, MSI-Nucleus on Advanced Optics, Universidad de Concepción, Concepción, Chile
Departamento de Física, Universidade Federal de Minas Gerais, Caixa Postal 702, Belo Horizonte, MG, 30123-970, Brazil
Palabras clave:correlators; gratings; modulators; optical processors; quantum information; Diffraction gratings; Modulators; Optical processors; Phase spatial light modulator; Quantum Information; Correlators
Año:2014
Volumen:47
Número:22
DOI: http://dx.doi.org/10.1088/0953-4075/47/22/225504
Título revista:Journal of Physics B: Atomic, Molecular and Optical Physics
Título revista abreviado:J Phys B At Mol Opt Phys
ISSN:09534075
CODEN:JPAPE
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09534075_v47_n22_p_Varga

Referencias:

  • Barnett, S.M., (2009) Quantum Information, , New York: Oxford University Press
  • Kok, P., Lovett, B.W., (2010) Introduction to Optical Quantum Information Processing, , Cambridge: Cambridge University Press
  • Mair, A., Vaziri, A., Weihs, G., Zeilinger, A., (2001) Nature, 412, p. 313
  • Molina-Terriza, G., Torres, J.P., Torner, L., (2008) Nat. Phys., 3, p. 305
  • Malik, M., Mirhosseini, M., Lavery, M.P.J., Leach, J., Padgett, M.J., Boyd, R.W., (2014) Nat. Commun., 5, p. 3115
  • Rossi, A., Vallone, G., Chiuri, A., De Martini, F., Mataloni, P., (2009) Phys. Rev. Lett., 102, p. 153902
  • Neves, L., Lima, G., Aguirre-Gómez, J.G., Monken, C.H., Saavedra, C., Pádua, S., (2005) Phys. Rev. Lett., 94, p. 100501
  • O'Sullivan-Hale, M.N., Ali Khan, I., Boyd, R.W., Howell, J.C., (2005) Phys. Rev. Lett., 94, p. 220501
  • Neves, L., Pádua, S., Saavedra, C., (2004) Phys. Rev. A, 69, p. 042305
  • Solís-Prosser, M.A., Neves, L., (2011) Phys. Rev. A, 84, p. 012330
  • Kolenderski, P., Sinha, U., Youning, L., Zhao, T., Volpini, M., Cabello, A., Laflamme, R., Jennewein, T., (2012) Phys. Rev. A, 86, p. 012321
  • Marques, B., Barros, M.R., Pimenta, W.M., Carvalho, M.A.D., Ferraz, J., Drumond, R.C., Terra Cunha, M., Pádua, S., (2012) Phys. Rev. A, 86, p. 032306
  • Etcheverry, S., Cañas, G., Gómez, E.S., Nogueira, W.A.T., Saavedra, C., Xavier, G.B., Lima, G., (2013) Sci. Rep., 3, p. 2316
  • Lima, G., Vargas, A., Neves, L., Guzmán, R., Saavedra, C., (2009) Opt. Express, 17, p. 10688
  • Lima, G., Neves, L., Guzmán, R., Gómez, E.S., Nogueira, W.A.T., Delgado, A., Vargas, A., Saavedra, C., (2011) Opt. Express, 19, p. 3542
  • Solís-Prosser, M.A., Arias, A., Varga, J.J.M., Rebón, L., Ledesma, S., Iemmi, C., Neves, L., (2013) Opt. Lett., 38, p. 4762
  • Solís-Prosser, M.A., Neves, L., (2010) Phys. Rev. A, 82, p. 055801
  • Cohn, R., Liang, M., (1994) Appl. Opt., 33, p. 4406
  • Birch, P., Young, R., Budgett, D., Chatwin, C., (2001) Opt. Lett., 26, p. 920
  • Van Putten, E.G., Vellekoop, I.M., Mosk, A.P., (2008) Appl. Opt., 47, p. 2076
  • Davis, J.A., Cottrell, D.M., Campos, J., Yzuel, M.J., Moreno, I., (1999) Appl. Opt., 38, p. 5004
  • Bagnoud, V., Zuegel, J.D., (2004) Opt. Lett., 29, p. 295
  • Lizana, A., Moreno, I., Márquez, A., Iemmi, C., Fernández, E., Campos, J., Yzuel, M.J., (2008) Opt. Express, 16, p. 16711
  • Lizana, A., Marquez, A., Lobato, L., Rodange, Y., Moreno, I., Iemmi, C., Campos, J., (2010) Opt. Express, 18, p. 10581
  • Burnham, D.C., Weinberg, D.L., (1970) Phys. Rev. Lett., 25, p. 84
  • Kwiat, P.G., Mattle, K., Weinfurter, H., Zeilinger, A., (1995) Phys. Rev. Lett., 725, p. 4337
  • Kwiat, P.G., Waks, E., White, A.G., Appelbaum, I., Eberhard, P.H., (1999) Phys. Rev. A, 60, p. R773
  • Xue, Y., Yoshizawa, A., Tsuchida, H., (2010) Opt. Express, 18, p. 8182
  • Goodman, J.W., (2005) Introduction to Fourier Optics, , New York: McGraw-Hill
  • Ivanovic, I.D., (1981) J. Phys. A: Math. Gen., 14, p. 3241
  • Wootters, W.K., Fields, B.D., (1989) Ann. Phys., 191, p. 363
  • Fiurášek, J., (2001) Phys. Rev. A, 64, p. 024102
  • James, D.F.V., Kwiat, P.G., Munro, W.J., White, A.G., (2001) Phys. Rev. A, 64, p. 052312
  • Hermerschmidt, A., Osten, S., Krüger, S., Blümel, T., (2007) Proc. SPIE, 6584, p. 65840E
  • Martínez, F., Márquez, A., Gallego, S., Francés, J., Pascual, I., (2014) Opt. Eng., 53, p. 014105

Citas:

---------- APA ----------
Varga, J.J.M., Rebón, L., Solís-Prosser, M.A., Neves, L., Ledesma, S. & Iemmi, C. (2014) . Optimized generation of spatial qudits by using a pure phase spatial light modulator. Journal of Physics B: Atomic, Molecular and Optical Physics, 47(22).
http://dx.doi.org/10.1088/0953-4075/47/22/225504
---------- CHICAGO ----------
Varga, J.J.M., Rebón, L., Solís-Prosser, M.A., Neves, L., Ledesma, S., Iemmi, C. "Optimized generation of spatial qudits by using a pure phase spatial light modulator" . Journal of Physics B: Atomic, Molecular and Optical Physics 47, no. 22 (2014).
http://dx.doi.org/10.1088/0953-4075/47/22/225504
---------- MLA ----------
Varga, J.J.M., Rebón, L., Solís-Prosser, M.A., Neves, L., Ledesma, S., Iemmi, C. "Optimized generation of spatial qudits by using a pure phase spatial light modulator" . Journal of Physics B: Atomic, Molecular and Optical Physics, vol. 47, no. 22, 2014.
http://dx.doi.org/10.1088/0953-4075/47/22/225504
---------- VANCOUVER ----------
Varga, J.J.M., Rebón, L., Solís-Prosser, M.A., Neves, L., Ledesma, S., Iemmi, C. Optimized generation of spatial qudits by using a pure phase spatial light modulator. J Phys B At Mol Opt Phys. 2014;47(22).
http://dx.doi.org/10.1088/0953-4075/47/22/225504