Generation of phase-stable infrared transients and electro-optic detection at frequencies up to 140 THz with a compact Er:fiber laser

A. Sell, R. Scheu, A. Leitenstorfer, R. Huber
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Abstract

Ultrabroadband terahertz (THz) optoelectronics has evolved into a powerful tool in femtosecond science and technology [1,2]. Field-sensitive detection of few-cycle THz transients with a constant carrier envelope phase, center frequencies of up to 41 THz, and spectral wings approaching the near infrared has been demonstrated [3]. Nevertheless, the complexity of the required laser systems limits their operation to specialized laboratories. In addition, novel applications in field-sensitive trace gas detection or all-optical phase control of near-infrared pulses call for still higher center frequencies [4].
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产生相位稳定的红外瞬变和电光检测频率高达140太赫兹与紧凑型铒光纤激光器
超宽带太赫兹(THz)光电子学已经发展成为飞秒科学和技术的强大工具[1,2]。已经证明了具有恒定载波包络相位、中心频率高达41太赫兹、光谱翼接近近红外的少周太赫兹瞬态的场敏感探测[3]。然而,所需要的激光系统的复杂性限制了他们的操作,专门的实验室。此外,在场敏痕量气体检测或近红外脉冲全光相位控制方面的新应用需要更高的中心频率[4]。
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