RIA: Coherent Control of Engineered Semiconductor Heterostructures Using Ultrafast Optical and Electrical Fields
RIA: Coherent Control of Engineered Semiconductor Heterostructures Using Ultrafast Optical and Electrical Fields
批准号:
9409297
负责人:
David Reitze
金额:
$8.8万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1994
资助国家:
美国
项目状态:
已结题
起止时间:
1994-08-01 至 1998-07-31
中文摘要
9409297 Reitze提出了一个为期三年的项目,实验和理论研究的适用性,使用相位和振幅,定制,超快(10 ps)的光和电场,以选择性地操纵工程半导体异质结构中的电子态。 电子和光电设备的精确控制,包括太赫兹源、太赫兹速度调制器和电子开关。指导这些系统中的电子和空穴分布的演化需要合成适当的场,以在比特征失相时间更长的时间段内与电子波包相干地相互作用。 必须解决的关键问题之一是通过声子和其他散射机制的失相限制波包相干性可以保持的时间段的程度。 为了应对这些挑战,提出了一种创新的方法,该方法使用超快成形的光和电波形来操纵非对称耦合量子阱结构中的电子态。 最初的努力将首先针对通过结合完善的带状线传播技术与飞秒和皮秒脉冲整形来产生和表征定制的电脉冲。 在该项目的后期,量子最优控制理论的方法将被应用于指导场的设计,使退相效应的影响最小化,并使波包相干性最大化。 拟议的研究将确定潜在的物理控制机制,确定在何种程度上耗散可以控制和最小化,并评估应用最优控制方法,这些系统的可行性。 ***
英文摘要
9409297 Reitze A three year project is proposed to experimentally and theoretically investigate the applicability of using phase and amplitude, tailored, ultrafast(10 ps) optical and electrical fields to selectively manipulate electronic states in engineering semiconductor heterostructures. Precise control of electronic and optoelectronic devices, including terahertz sources, and terahertz speed modulators and electronic switches. Directing the evolution of electron and hole distributions in these systems requires synthesis of the appropriate fields to interact coherently with the electronic wavepacket over time periods longer than characteristic dephasing times. One of the key issues which must be addressed is the extent to which dephasing via phonon and other scattering mechanisms limits the time period in which the wavepacket coherence can be maintained. In order to carry out these challenges, An innovative approach is proposed which uses ultrafast shaped optical and electrical waveforms to manipulate electronic states in an asymmetric coupled quantum well structure. Initial efforts will first be directed at generating and characterizing tailored electrical pulses by combining well established stripline propagation techniques with femtosecond and picosecond pulse shaping. Later in the project, the methods of quantum optimal control theory will be applied to guide the design of fields which minimize the influence of dephasing effects and maximize wavepacket coherence. The proposed research will identify the potential physical controlling mechanisms, determine the extent to which dissipation can be controlled and minimized, and asses the feasibility of applying optimal control methods to these systems. ***
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资助金额:$25000.0万
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依托单位:
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批准号:1210172
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依托单位:
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依托单位:
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批准号:0328418
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项目类别:Cooperative Agreement
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资助金额:$0.0万
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依托单位:
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资助金额:$0.0万
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负责人:David Reitze
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依托单位:
Development of New Diagnostic Techniques for Preliminary and in Situ Characterization of Advanced LIGO Optical Components
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批准号:0140110
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资助金额:$32.19万
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财政年份:2002
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依托单位:
Development of an Ultrabroad Bandwidth Source for Ultrafast Observation and Control of Physical, Chemical, and Biological Systems
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依托单位:
国内基金
海外基金
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依托单位: