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Number of items: 10.

Conference Paper

Laha, A and Krupanidhi, SB and Saha, S (2003) Dielectric Properties of Pulsed Excimer Laser Ablated $BaBi_2Nb_2O_9$ Thin Films. In: Ferroelectric Thin Films XI. Symposium(Mater. Res. Soc. Symposium Proceedings Vol.748), 2-5 Dec. 2002, Boston, MA, USA, pp. 435-440.

Laha, A and Saha, S and Krupanidhi, SB (2003) Field Induced Dielectric Properties of $0.7Pb(Mg_{1/3}Nb_{2/3})O_3-0.3PbTiO_3$ Thin Films. In: Ferroelectric Thin Films XI. Symposium, 2-5 Dec. 2002, Boston, MA, USA, pp. 379-84.

Journal Article

Krupanidhi, SB and Laha, A (2004) Investigation of Relaxor Behavior in Pb(Mgg1/3Nb2/3)O3-PbTiO3 Thin Films. In: Ferroelectrics, 306 . pp. 17-27.

Venkateswarlu, P and Laha, A and Krupanidhi, SB (2003) Study of relaxor-like behaviour of laser ablated $(Pb, La)Tio_3$ thin films. In: Solid State Communications, 127 (3). pp. 247-251.

Bharadwaja, SSN and Laha, A and Halder, S and Krupanidhi, SB (2002) Reversible and irreversible switching processes in pure and lanthanum modified lead zirconate thin films. In: Materials Science and Engineering B, 94 (2-3). 218-222 .

Halder, S and Victor, P and Laha, A and Bhattacharya, S and Krupanidhi, SB and Agarwal, G and Singh, AK (2002) Pulsed excimer laser ablation growth and characterization of $Ba(Sn_{0.1}Ti_{0.9})O_3$ thin films. In: Solid State Communications, 121 (6-7). pp. 329-332.

Laha, A and Victor, P and Victor, P (2002) Study of relaxor behavior of 0.7Pb(Mg1/3Nb2/3)O-3-0.3PbTiO(3) thin films. In: Integrated Ferroelectrics, 46 (1). pp. 153-162.

Bhattacharyya, S and Victor, P and Laha, A and Krupanidhi, SB (2002) The thickness dependence of the electrical and dielectric properties in the laser ablated SrBi2Nb2O9 thin films. In: Integrated Ferroelectrics, 50 . pp. 159-169.

Laha, A and Krupanidhi, SB (2000) Growth and characterization of excimer laser-ablated BaBi2Nb2O9 thin films. In: Applied Physics Letters, 77 (23). 3818 -3820.

Laha, A and Krupanidhi, SB (2000) Growth and characterization of excimer laser-ablated $BaBi_2Nb_2O_9$ thin films. In: Applied Physics Letters, 77 (23). pp. 3818-3820.

This list was generated on Mon Sep 22 22:20:48 2014 IST.