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Effects of strong laser fields on hadronic helium atoms

机译:强激光场对强子氦原子的影响

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摘要

The metastable hadronic helium atoms in microseconds lifetime are available in laboratory, and two-photon spectroscopy was reported recently. This exotic helium atom has an electron in the ground state and a negative hadron rotating around the helium nucleus. We theoretically study the excitation on hadronic helium by femtosecond pulse and elucidate the influence of moleculelike structure and rotation behavior on the photoelectron spectra and high-order harmonic generation. Because of the moleculelike structure, the electronic ground state consists of several angular orbitals. These angular orbitals can enhance photoelectron spectra at high energies, and also influence the harmonic generation spectra considerably. In particular, the harmonic spectra can occur at even harmonic orders because of the transition between these angular orbitals and continuum states. On the other side, the rotation behavior of hadron can induce a frequency shift in the harmonic spectra. The magnitude of the frequency shift depends on the orbiting speed of the hadron, which is considerable because the rotation period is in a few femtoseconds, a time scale that is comparable to that of infrared laser and is feasible in current laser experiments.
机译:在实验室中可以获得亚微秒寿命的亚稳态强子氦原子,并且最近报道了双光子光谱。这个奇异的氦原子具有一个处于基态的电子和一个围绕氦原子核旋转的负强子。我们从理论上研究了飞秒脉冲对强子氦的激发,并阐明了分子状结构和旋转行为对光电子光谱和高次谐波产生的影响。由于分子状结构,电子基态由几个角轨道组成。这些角轨道可以在高能量下增强光电子光谱,并且还显着影响谐波产生光谱。特别地,由于这些角轨道和连续态之间的过渡,谐波频谱甚至可以以谐波次数出现。另一方面,强子的旋转行为会引起谐波频谱的频移。频移的大小取决于强子的绕行速度,这是相当大的,因为旋转周期在几飞秒内,这种时间尺度与红外激光器相当,并且在当前的激光实验中是可行的。

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