RESONANT ELECTRON OPTICAL-PHONON INTERACTIONS FOR IMPURITIES IN GAAS AND GAAS/ALXGA1-XAS QUANTUM-WELLS AND SUPERLATTICES

被引:26
作者
CHENG, JP
MCCOMBE, BD
BROZAK, G
SCHAFF, W
机构
[1] MIT,FRANCIS BITTER NATL MAGNET LAB,CAMBRIDGE,MA 02139
[2] CORNELL UNIV,DEPT ELECT ENGN,ITHACA,NY 14853
来源
PHYSICAL REVIEW B | 1993年 / 48卷 / 23期
关键词
D O I
10.1103/PhysRevB.48.17243
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A systematic experimental study of confinement effects on the strength of electron-optical-phonon interactions is presented. The hydrogenic 1s-2p+1 transition of shallow donors in bulk GaAs and GaAs/AlxGa1-xAs multiple quantum wells (MQW) and superlattices has been tuned through resonances with the GaAs optical phonons by magnetic fields up to 23.5 T and followed with far-infrared photoconductivity spectroscopy. Extremely large and asymmetric interaction gaps have been observed in both two-level and three-level resonance regions for small-well-width (125 angstrom) MQW samples. These gaps decrease systematically as the well width increases, approaching the bulk limit for the largest-well-width (450 angstrom) sample. For the superlattice sample (80-angstrom well and 9-angstrom barrier), the interaction is stronger than that for bulk, but much smaller than that for the MQW samples with comparable well width. Results are consistent with enhancement of the interaction as confinement progresses from three dimensions to two dimensions and demonstrate that the extent of the electronic wave function is the most important factor determining the interaction strength. Other phonon modes (interface phonons) may also contribute to the enhanced interaction for small-well-width samples. The 1s-3p+1 transition was also used to study the resonant polaron effects for strong-confinement MQW samples; results are consistent with those from the ls-2p+1 transition.
引用
收藏
页码:17243 / 17254
页数:12
相关论文
共 48 条
[1]   INTERFACE VIBRATIONAL RAMAN LINES IN GAAS/ALXGA1-X AS SUPERLATTICES [J].
ARORA, AK ;
RAMDAS, AK ;
MELLOCH, MR ;
OTSUKA, N .
PHYSICAL REVIEW B, 1987, 36 (02) :1021-1024
[2]  
CARDONA M, 1989, SUPERLATTICE MICROST, V4, P27
[3]   ELECTRON OPTICAL-PHONON INTERACTION IN SEMICONDUCTOR MULTIPLE-QUANTUM-WELL STRUCTURES [J].
CHANG, YH ;
MCCOMBE, BD ;
MERCY, JM ;
REEDER, AA ;
RALSTON, J ;
WICKS, GA .
PHYSICAL REVIEW LETTERS, 1988, 61 (12) :1408-1411
[4]   OPTICAL-PHONON MODES IN A DOUBLE HETEROSTRUCTURE OF POLAR CRYSTALS [J].
CHEN, R ;
LIN, DL ;
GEORGE, TF .
PHYSICAL REVIEW B, 1990, 41 (03) :1435-1442
[5]   ELECTRON-OPTICAL-PHONON INTERACTION IN SEMICONDUCTOR MULTIPLE-QUANTUM-WELL STRUCTURED - REPLY [J].
CHENG, JP ;
MCCOMBE, BD .
PHYSICAL REVIEW LETTERS, 1989, 62 (16) :1925-1925
[6]   2-LEVEL AND 3-LEVEL RESONANT MEASUREMENTS OF IMPURITY-BOUND MAGNETOPOLARONS IN MULTIPLE-QUANTUM-WELL STRUCTURES [J].
CHENG, JP ;
MCCOMBE, BD ;
BROZAK, G .
PHYSICAL REVIEW B, 1991, 43 (11) :9324-9327
[7]   MAGNETOPOLARON EFFECT ON SHALLOW DONORS IN GAAS [J].
CHENG, JP ;
MCCOMBE, BD ;
SHI, JM ;
PEETERS, FM ;
DEVREESE, JT .
PHYSICAL REVIEW B, 1993, 48 (11) :7910-7914
[8]   CONFINEMENT EFFECTS ON THE LOW-FIELD-HIGH-FIELD CORRESPONDENCES OF HYDROGENIC IMPURITY STATES IN QUASI-2-DIMENSIONAL SYSTEMS [J].
CHENG, JP ;
MCCOMBE, BD .
PHYSICAL REVIEW B, 1990, 42 (12) :7626-7629
[9]   FOLDED ACOUSTIC AND QUANTIZED OPTIC PHONONS IN (GAAL)AS SUPERLATTICES [J].
COLVARD, C ;
GANT, TA ;
KLEIN, MV ;
MERLIN, R ;
FISCHER, R ;
MORKOC, H ;
GOSSARD, AC .
PHYSICAL REVIEW B, 1985, 31 (04) :2080-2091
[10]   LO-PHONON CONFINEMENT AND POLARON EFFECT IN A QUANTUM WELL [J].
COMAS, F ;
TRALLEROGINER, C ;
RIERA, R .
PHYSICAL REVIEW B, 1989, 39 (09) :5907-5912