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Energy Transfer Processes In A Polymer Laser

机译:聚合物激光器中的能量转移过程

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In this work, we had studied the Amplified Spontaneous Emission( ASE) properties of polymer BEHP-co-MEH-PPV in THF, under pulsed laser excitation. In our earlier communication, we had shown that MEH-PPV alone could produce ASE under pulsed Nd: YAG laser excitation only in its excimeric state. A follow up study reported here, on conjugated polymer shows that in BEHP-co-MEH-PPV, the BEHP-PPV component is capable of forcing MEH-PPV to produce ASE at 560nm, which appears to arise out of the monomeric state of MEH-PPV.It is important to note that BEHP-PPV as a part of the compound could get excited by pump laser pulse, and transfer its excitation energy internally to MEH-PV helping MEH-PPV to produce ASE in non excimeric state. Also we had investigated the energy-transfer process externally from the donor coumarin485 (C485) to acceptor MEH-PPV By this processes also MEH- PPV could be forced to produce ASE from the monomeric state
机译:在这项工作中,我们研究了在脉冲激光激发下,聚合物BEHP-co-MEH-PPV在THF中的放大自发辐射(ASE)特性。在我们之前的通讯中,我们已经证明,仅MEH-PPV可以在脉冲Nd:YAG激光激发下仅在其激子态下产生ASE。此处报道的有关共轭聚合物的后续研究表明,在BEHP-co-MEH-PPV中,BEHP-PPV组分能够迫使MEH-PPV在560nm处产生ASE,这似乎是由于MEH的单体状态引起的-PPV。重要的是要注意,作为化合物一部分的BEHP-PPV可能被泵浦激光脉冲激发,并将其激发能内部转移到MEH-PV中,从而帮助MEH-PPV以非激基态产生ASE。我们还研究了从供体香豆素485(C485)到受体MEH-PPV的外部能量转移过程,通过这种过程,MEH-PPV也可能被迫从单体态产生ASE

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