Zeptosecond precision pulse shaping.
نویسندگان
چکیده
We investigate the temporal precision in the generation of ultrashort laser pulse pairs by pulse shaping techniques. To this end, we combine a femtosecond polarization pulse shaper with a polarizer and employ two linear spectral phase masks to mimic an ultrastable common-path interferometer. In an all-optical experiment we study the interference signal resulting from two temporally delayed pulses. Our results show a 2σ-precision of 300 zs = 300 × 10(-21) s in pulse-to-pulse delay. The standard deviation of the mean is 11 zs. The obtained precision corresponds to a variation of the arm's length in conventional delay stage based interferometers of 0.45 Å. We apply these precisely generated pulse pairs to a strong-field quantum control experiment. Coherent control of ultrafast electron dynamics via photon locking by temporal phase discontinuities on a few attosecond timescale is demonstrated.
منابع مشابه
The Design of Optical Pulse Shapes with an Aperture- Coupled-Stripline Pulse-Shaping System
LLE Review, Volume 78 97 Laser-fusion experiments require precise control of the temporal profile of optical pulses applied to targets. An optical pulse– shaping system has been in operation on OMEGA for several years.1 During this time the demands on the precision, flexibility, and repeatability of the optical pulse–shaping system have steadily increased. To meet these new demands, a new pulse...
متن کاملZeptosecond high harmonic keV x-ray waveforms driven by midinfrared laser pulses.
We demonstrate theoretically that the temporal structure of high harmonic x-ray pulses generated with midinfrared lasers differs substantially from those generated with near-infrared pulses, especially at high photon energies. In particular, we show that, although the total width of the x-ray bursts spans femtosecond time scales, the pulse exhibits a zeptosecond structure due to the interferenc...
متن کاملRadially polarized Yb-fiber MOPA producing 10 W output using SLM based pulse shaping for efficient generation of arbitrary shaped picosecond pulses
We demonstrate beyond 10W simultaneous temporal and spatial pulse-shaping on a picosecond fiber laser system. Our proposed technique can substantially enhance the capability and efficiency of the existing ultrashort fiber laser systems for high precision material processing. OCIS codes: (140.0140) Lasers and laser optics; (140.3070) Infrared and far-infrared lasers; (140.3300) Laser beam shapin...
متن کاملl.B Shaping and Measuring a Laser Pulse Using Spectral Beam Deflection
The capability to produce laser pulses of arbitrary temporal shape is important in areas of optical communication,' atomic and molecular spectroscopy~ and laserfu~ion.~ Previous pulse-shaping techniques have achievedmoderate success in these areas.44 The new approach discussed here, using the technique of spectral beam deflection (SBD), offers the potential of higher temporal resolution combine...
متن کاملLasetron: a proposed source of powerful nuclear-time-scale electromagnetic bursts.
Electromagnetic bursts of substantial energy on a nuclear time scale of 10(-21)-10(-22) s [zeptosecond (zs) to sub-zs] can theoretically be generated by a perawatt or multiterawatt laser beam focused on a subwavelength-size solid particle or thin wire. Terawatt laser in a similar setup could be instrumental in reaching the subattosecond domain. The system may also generate a half-cycle pulse ma...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Optics express
دوره 19 12 شماره
صفحات -
تاریخ انتشار 2011