Hostname: page-component-848d4c4894-wg55d Total loading time: 0 Render date: 2024-06-12T15:57:17.804Z Has data issue: false hasContentIssue false

Observation of ESA, ET and thermally enhanced frequency upconversion in Nd3+: LiTeO2 glass

Published online by Cambridge University Press:  06 February 2008

K. Kumar
Affiliation:
Laser and Spectroscopy Laboratory, Department of Physics, Banaras Hindu University, Varanasi – 221005, India
D. K. Rai
Affiliation:
Laser and Spectroscopy Laboratory, Department of Physics, Banaras Hindu University, Varanasi – 221005, India
S. B. Rai*
Affiliation:
Laser and Spectroscopy Laboratory, Department of Physics, Banaras Hindu University, Varanasi – 221005, India
Get access

Abstract

Infrared to visible upconversion emission bands are observed in Nd3+: LiTeO2 glass at 430, 482, 525, 535, 580, 600, 664 and 766 nm wavelengths due to the 2P1/2$\to$4I9/2, 2P1/2$\to$4I11/2, 2P1/2$\to$4I13/2, 4G7/2$\to$4I9/2, 2P1/2$\to$4I15/2, 4G7/2$\to $4I11/2 & 4G5/2+2G7/2$\to$4I9/2, 4G7/2$\to$4I13/2 and 4G7/2$\to$4I15/2 transitions, respectively. Mechanisms involved in these upconversion emissions are shown to either involve excited state absorption or energy transfer depending upon the concentration of the rare earth ions. The emission bands at 755 and 968 nm are also observed due to the thermally excited phonon absorption, on excitation with 800 nm wavelength. A 90 fold enhancement in the intensity of anti-Stokes emission at 755 nm is observed in this glass when temperature is raised from 298 to 523 K. Fluorescence intensity ratio (FIR) and sensitivity (S) of the two thermally coupled levels viz. 4F3/2 and 4F5/2 are calculated at different temperatures and results show that these levels could act as temperature sensor in tellurite host. Lifetimes of the excited levels 2P1/2, 4G7/2, 4F3/2, 4F5/2 and 4F7/2 involved in the emission process are also determined and their temperature dependence is described.

Keywords

Type
Research Article
Copyright
© EDP Sciences, 2008

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

D.C. Brown, High-Peak-Power Nd: Glass Laser Systems (Springer-Verlag, New York, 1981)
Downing, E., Hesselink, L., Ralson, J., Macfarlane, R., Science 273, 1185 (1996) CrossRef
Wade, S.A., Collins, S.F., Baxter, G.W., J. Appl. Phys. 94, 4743 (2003) CrossRef
Chivian, J.S., Case, W.E., Eden, D.D., Appl. Phys. Lett. 35, 124 (1979) CrossRef
Russel, D.L., Holliday, K., Optics Commun. 191, 277 (2001) CrossRef
Guy, S., Joubert, M.F., Jacquier, B., Bouazaoui, M., Phys. Rev. B 47, 11001 (1993) CrossRef
Ning IA, B. Xu, Z. Jiang, Optics Commun. 127, 263 (1996)
Chen, D., Wang, Y., Yu, Y., Hu, Z., Mat. Sci. Eng. B 123, 1 (2005) CrossRef
Lav, V. $\imath $ n, I. Iparraguirre, J. Azkargorta, A. Mendioroz, J.G. Platas, R. Balda, J. Fernandez, Opt. Mat. 25, 201 (2004)
Mendez-Ramos, J., Abril, M., Martin, I.R., Rodriguez-Mendoza, U.R., Lavin, V., Rodriguez, V.D., J. Appl. Phys. 99, 113510 (2006) CrossRef
Balda, R., Fernandez, J., Arriandiaga, M.A., Fernandez-Navarro, J.M., J. Phys.: Condens. Matter 19, 086223 (2007)
Layne, C.B., Lowdermilk, W.H., Weber, M.J., Phys. Rev. B 16, 10 (1977) CrossRef
Orlovskii, Y.V., Reeves, R.J., Powell, R.C., Basiev, T.T., Pukhov, K.K., Phys. Rev. B 49, 3821 (1994) CrossRef
Auzel, F., Phys. Rev. B 13, 2809 (1976) CrossRef
Miyakawa, T., Dexter, D.L., Phys. Rev. B 1, 2961 (1970) CrossRef
Menezes, L. de S., Maciel, G.S., Cid B. de Araujo, Y. Messaddeq, J. Appl. Phys. 90, 4498 (2001) CrossRef
Oliveira, A.S., Gouveia, E.A., de Araujo, M.T., Gouveia-Neto, A.S., Cid B. de Araujo, Y. Messaddeq, J. Appl. Phys. 87, 4274 (2000) CrossRef
Cz. Koepke, K. Wisniewski, L. Sikorski, D. Piatkowski, K. Kowalska, M. Naftaly, Opt. Mat. 28, 129 (2006) CrossRef
Kumar, K., Rai, S.B., Sol. St. Commun. 142, 58 (2007) CrossRef
Wade, S.A.. J.C. Muscat, S.F. Collins, G.W. Baxter, Rev. Sci. Instr. 70, 4279 (1999) CrossRef
Collins, S.F., Baxter, G.W., Wade, S.A., Sun, T., Grattan, K.T.V., Zhang, Z.Y., Palmer, A.W., J. Appl. Phys. 84, 4649 (1998) CrossRef
Amorim, H.T. , Vermelho, M.V.D., Gouveia-Neto, A.S., Cassanjes, F.C., Ribeiro, S.J.L., Messaddeq, Y., J. Alloys Comp. 346, 282 (2002) CrossRef
de Menezes, L.S., de Araujo, C.B., Maciel, G.S., Messaddeq, Y., Aegerter, M.A., Appl. Phys. Lett. 70, 683 (1997) CrossRef
Bullock, S.R., Reddy, B.R., Pope, C.L., Nash-Stevenson, S.K., J. Non-Cryst. Sol. 212, 85 (1997) CrossRef
Dexter, D.L., J. Chem. Phys. 21, 836 (1953) CrossRef