Cavity solitons in semiconductor microcavities: fundamental and applicative aspects

被引:0
作者
Brambilla, M [1 ]
Maggipinto, T [1 ]
Perrini, IM [1 ]
Rizzi, F [1 ]
机构
[1] Univ Bari, INFM, Dipartimento Fis Interateneo, I-70126 Bari, Italy
来源
LASER OPTICS 2000: SEMICONDUCTOR LASERS AND OPTICAL COMMUNICATION | 2001年 / 4354卷
关键词
cavity solitons; pattern formation; semiconductor microcavities;
D O I
10.1117/12.418834
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Cavity solitons appear as stationary, isolated peaks of light superimposed onto a homogeneous background field in the transverse profile of the coherent field transmitted or reflected by a non-linear resonator. These self-organised structures are theoretically predicted and simulated in a broad area multi-quantum-well vertical microresonator. We develop models suited to describe the macroscopic properties of the medium and the nonlinear interaction with the coherent field. Parametric domains and operational regimes for stable solitons are investigated along with some quantitative appreciation of their characteristics. Intrinsic stability properties of solitons are investigated by means of semi-analytical techniques and this allows to describe the destabilising mechanisms for solitons, mutual interaction properties, their response to perturbations and some of their dynamical features.
引用
收藏
页码:78 / 88
页数:11
相关论文
共 50 条
[21]   CAVITY SOLITONS: DISSIPATIVE STRUCTURES IN NONLINEAR PHOTONICS [J].
Tlidi, Mustapha ;
Panajotov, Krassimir .
ROMANIAN REPORTS IN PHYSICS, 2018, 70 (01)
[22]   Thermal effects and transverse structures in semiconductor microcavities [J].
Perrini, IM ;
Maggipinto, T ;
Brambilla, M ;
Tissoni, G ;
Spinelli, L ;
Lugiato, LA .
ICTON 2002: PROCEEDINGS OF THE 2002 4TH INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS AND EUROPEAN SYMPOSIUM ON PHOTONIC CRYSTALS, VOL 1, 2002, :130-135
[23]   Bright Cavity Polariton Solitons [J].
Egorov, O. A. ;
Skryabin, D. V. ;
Yulin, A. V. ;
Lederer, F. .
PHYSICAL REVIEW LETTERS, 2009, 102 (15)
[24]   On the Temporal Tweezing of Cavity Solitons [J].
Rossi, Julia ;
Chandramouli, Sathyanarayanan ;
Carretero-Gonzalez, Ricardo ;
Kevrekidis, Panayotis G. .
JOURNAL OF NONLINEAR MATHEMATICAL PHYSICS, 2024, 31 (01)
[25]   Dynamical model of two-dimensional self-induced-transparency-solitons and pattern formation in nonlinear optical waveguides and semiconductor microcavities [J].
Slavcheva, GM ;
Arnold, JM ;
Ziolkowski, RW .
PHYSICS AND SIMULATION OF OPTOELECTRONIC DEVICES XI, 2003, 4986 :168-179
[26]   Cavity soliton mobility in semiconductor microresonators [J].
Kheradmand, R ;
Lugiato, LA ;
Tissoni, G ;
Brambilla, M ;
Tajalli, H .
MATHEMATICS AND COMPUTERS IN SIMULATION, 2005, 69 (3-4) :346-355
[27]   Towards quantum correlated polariton modes in semiconductor microcavities [J].
Romanelli, M ;
Leyder, C ;
Karr, JP ;
Baas, A ;
Giacobino, E ;
Bramati, A .
JOURNAL OF OPTICS B-QUANTUM AND SEMICLASSICAL OPTICS, 2005, 7 (12) :S523-S531
[28]   Coherent control of exciton-polaritons in semiconductor microcavities [J].
Amand, T ;
Marie, X ;
Renucci, P ;
Paillard, M ;
Barrau, J .
ULTRAFAST PHENOMENA IN SEMICONDUCTORS III, 1999, 3624 :92-108
[29]   EXACT QUANTUM CALCULATION OF POLARITON DISPERSION IN SEMICONDUCTOR MICROCAVITIES [J].
SAVONA, V ;
TASSONE, F .
SOLID STATE COMMUNICATIONS, 1995, 95 (10) :673-678
[30]   Parametrically driven Kerr cavity solitons [J].
Englebert, Nicolas ;
De Lucia, Francesco ;
Parra-Rivas, Pedro ;
Arabi, Carlos Mas ;
Sazio, Pier-John ;
Gorza, Simon-Pierre ;
Leo, Francois .
NATURE PHOTONICS, 2021, 15 (11) :857-861