Ultrafast generation of optical and acoustic phonons in nanocrystallites

被引:0
作者
Bragas, AV [1 ]
Aku-Leh, C [1 ]
Merlin, R [1 ]
机构
[1] Univ Buenos Aires, Fac Ciencias Exactas & Nat, Dept Fis, RA-1428 Buenos Aires, DF, Argentina
来源
Ultrafast Phenomena in Semiconductors and Nanostructure Materials IX | 2005年 / 5725卷
关键词
coherent phonon; confined acoustic phonon; semiconductor quantum dot; stimulated Raman; laser pulse;
D O I
10.1117/12.588718
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
We report on the impulsive generation of optical and acoustic phonons in CdTe0.68Se0.32 nanocrystallites embedded in glass, at room temperature. Using ultrafast laser pulses in a pump-probe configuration, we were able to generate coherent vibrations. The energy of our laser was tuned to the absorption edge of the nanocrystals so as to resonantly excite the quantum dots. We identified two longitudinal optical phonons, an optical mode of nfixed longitudinal-transverse nature and a longitudinal-like acoustic mode. The frequency, amplitude, decay and phase as a function of excitation energy were determined for the optical modes. These results clearly identify impulsive stimulated Raman scattering as the underlying mechanism of the coherent field generation. The acoustic oscillations are associated with the lowest confined acoustic mode with pseudo angular momentum 1=0. We find that the frequency of this mode increases as the laser central energy increases. Since the energy of the exciton at the fundamental gap depends strongly on the particle size, such a behavior is attributed to resonant size-selective excitation of the nanocrystallites. In contrast, spontaneous Raman measurements obtained from the same sample do not show size selectivity and, in addition, the resonant spectra show 1=1 and 1=2 modes, which are not seen in the pump-probe data. Possible explanations and comparison with other reports are discussed.
引用
收藏
页码:126 / 135
页数:10
相关论文
共 30 条
[1]   RETRIEVAL OF FREQUENCIES, AMPLITUDES, DAMPING FACTORS, AND PHASES FROM TIME-DOMAIN SIGNALS USING A LINEAR LEAST-SQUARES PROCEDURE [J].
BARKHUIJSEN, H ;
DEBEER, R ;
BOVEE, WMMJ ;
VANORMONDT, D .
JOURNAL OF MAGNETIC RESONANCE, 1985, 61 (03) :465-481
[2]  
Bischof T, 1996, J RAMAN SPECTROSC, V27, P297, DOI 10.1002/(SICI)1097-4555(199603)27:3/4<297::AID-JRS964>3.0.CO
[3]  
2-J
[4]   Ultrafast optical generation of coherent phonons in CdTe1-xSex quantum dots -: art. no. 205306 [J].
Bragas, AV ;
Aku-Leh, C ;
Costantino, S ;
Ingale, A ;
Zhao, J ;
Merlin, R .
PHYSICAL REVIEW B, 2004, 69 (20) :205306-1
[5]  
BRAGAS AV, UNPUB
[6]   Size-dependent dynamics of coherent acoustic phonons in nanocrystal quantum dots [J].
Cerullo, G ;
De Silvestri, S ;
Banin, U .
PHYSICAL REVIEW B, 1999, 60 (03) :1928-1932
[7]   THEORY OF ONE-PHONON RAMAN-SCATTERING IN SEMICONDUCTOR MICROCRYSTALLITES [J].
CHAMBERLAIN, MP ;
TRALLEROGINER, C ;
CARDONA, M .
PHYSICAL REVIEW B, 1995, 51 (03) :1680-1693
[8]   FAR-INFRARED AND RAMAN VIBRATIONAL TRANSITIONS OF A SOLID SPHERE - SELECTION-RULES [J].
DUVAL, E .
PHYSICAL REVIEW B, 1992, 46 (09) :5795-5797
[9]   RAMAN, INFRARED, PHOTOLUMINESCENCE AND THEORETICAL-STUDIES OF THE II-VI-VI TERNARY CDSETE [J].
FENG, ZC ;
BECLA, P ;
KIM, LS ;
PERKOWITZ, S ;
FENG, YP ;
POON, HC ;
WILLIAMS, KP ;
PITT, GD .
JOURNAL OF CRYSTAL GROWTH, 1994, 138 (1-4) :239-243
[10]   Size-dependent surface phonon mode of CdSe quantum dots [J].
Hwang, YN ;
Park, SH ;
Kim, D .
PHYSICAL REVIEW B, 1999, 59 (11) :7285-7288