![Coherent Control of four-Wave Mixing (四波混频相干控制)(英文版) [精装]](http://images.china-pub.com/ebook1240001-1245000/1244887/zcover.jpg)
| 《四波混频相干控制(英文版)》由高等教育出版社出版,张彦鹏、聂志强、肖敏所著。本书讨论原子相干诱导的多能级原子系统中四波混频过程频率、时间与空间领域的相互作用。可供非线性光学领域的专家学者以及在校研究生和本科生学习参考。 |
作者:张彦鹏 聂志强 (美国)肖敏 .. << 查看详细 |
| 1 introduction 1.1 nonlinear suscetibility 1.2 coherence functions 1.3 suression and enhancement of fwm rocesses 1.4 double dressing schemes of robe and four-wave mixingfields 1.5 satial otical modulation via kerr nonlinearities 1.6 formations and dynamics of novel satial solitons references 2 ultrafast olarization beats of four-wave mixing rocesses 2.1 four-level olarization beats with broadband noisy light 2.1.1 basic theory 2.1.2 flb in a doler-broadened system 2.1.3 hoton-echo 2.1.4 exeriment and result 2.2 ultrafast sum-frequency olarization beats in twin markovianstochastic correlation 2.2.1 basic theory 2.2.2 second-order stochastic correlation of asb 2.2.3 fourth-order stochastic correlation of asb references 3 raman, rayleigh and brillouin-enhanced fwm olarizationbeats . 3.1 attosecond sum-frequency raman-enhanced olarization beatsusing twin hase-sensitive color locking noisy lights 3.1.1 basic theory of attosecond sum-frequency reb 3.1.2 homodyne detection of sum-frequency reb 3.1.3 heterodyne detection of difference-frequency reb 3.2 cometition between raman and rayleigh-enhanced four-wavemixings in attosecond olarization beats 3.2.1 basic theory 3.2.2 stochastic correlation effects of rayleigh andraman-enhanced fwm 3.2.3 the raman and rayleigh-enhanced nonlinear suscetibility incw limit 3.2.4 homodyne detection of asb 3.2.5 heterodyne detection of asb 3.2.6 discussion and conclusion 3.3 coexisting brillouin, rayleigh and raman-enhanced four-wavemixings 3.3.1 basic theory 3.3.2 homodyne detection of asb 3.3.3 heterodyne detection of asb 3.3.4 hase angle 3.3.5 discussion and conclusion references 4 multi-dressing four-wave mixing rocesses in confined andnon-confined atomic system 4.1 temoral and satial interference between four-wave mixing andsix-wave mixing channels 4.2 intermixing between four-wave mixing and six-wave mixing in afour-level atomic system 4.2.1 interlay between fwm and swm 4.2.2 discussion 4.3 coexistence of four-wave, six-wave and eight-wave mixingrocesses in multi-dressed atomic systems 4.3.1 arallel and nested dressing schemes 4.3.2 interlay among coexisting fwm, swm and ewm rocesses 4.4 controlled multi-wave mixing via interacting dark states in afive-level system 4.4.1 basic theory 4.4.2 numerical results 4.4.3 discussion 4.5 olarization interference of multi-wave mixing in a confinedfive-level system 4.5.1 basic theory 4.5.2 mwm in long cells 4.5.3 mwm in ultra-thin and micrometer cells 4.5.4 discussion references 5 enhancement and suression in four-wave mixing rocesses 5.1 interlay among multi-dressed four-wave mixing rocesses 5.2 observation of enhancement and suression of four-wave mixingrocesses 5.3 controlling enhancement and suression of four-wave mixingvia olarized light 5.3.1 theoretical model and analysis 5.3.2 exerimental results 5.4 enhancing and suressing four-wave mixing inelectronm-genetically induce transarency window references 6 multi-wave mixing rocesses in multi-level atomic system 6.1 modulating multi-wave mixing rocesses via olarizable darkstates 6.2 olarization sectroscoy of dressed four-wave mixing in athree-level atomic system 6.2.1 various nonlinear suscetibilities for differentolarization schemes 6.2.2 nonlinear suscetibilities for zeeman-degenerate systeminteracting with olarized fields 6.2.3 third-order density-matrix elements in resence of dressingfields 6.3 controlling fwm and swm in multi-zeeman atomic system withelectromagnetically induced transarency 6.3.1 basic theory 6.3.2 dual-dressed eit 6.3.3 four-wave mixing 6.3.4 six-wave mixing references 7 controlling satial shift and sltting of four-wave mixing 7.1 basic theory 7.2 electromagnetically-induced satial nonlinear disersion offour-wave mixing beams 7.3 satial disersion induced by cross-hase modulation 7.4 exerimental demonstration of otical switching and routingvia four-wave mixing satial shift 7.4.1 theoretical model and exerimental scheme 7.4.2 otical switching and routing via satial shift 7.5 controlled satial beamslitter using four-wave mixingimages 7.6 satial slitting and intensity suression of four-wavemixing in v-tye three-level atomic system references 8 satial modulation of four-wave mixing solitons 8.1 basic theory 8.1.1 calculation of double dressed cross-kerr nonlinear index ofrefraction 8.1.2 calculation of analytical solution of one-dimensionalbright and dark satial solitons 8.2 novel satial ga solitons of four-wave mixing 8.3 diole-mode satial solitons of four-wave mixing 8.4 modulated vortex solitons of four-wave mixing references index |
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