Opportunities for chiral discrimination using high harmonic generation in tailored laser fields
arXiv:1508.02890 · doi:10.1088/0953-4075/48/23/234005
Abstract
Chiral discrimination with high harmonic generation (cHHG method) has been introduced in the recent work by R. Cireasa et al ( Nat. Phys. 11, 654 - 658, 2015). In its original implementation, the cHHG method works by detecting high harmonic emission from randomly oriented ensemble of chiral molecules driven by elliptically polarized field, as a function of ellipticity. Here we discuss future perspectives in the development of this novel method, the ways of increasing chiral dichroism using tailored laser pulses, new detection schemes involving high harmonic phase measurements, and concentration-independent approaches. Using the example of the epoxypropane molecule CHO (also known as 1,2-propylene oxide), we show theoretically that application of two-color counter-rotating elliptically polarized laser fields yields an order of magnitude enhancement of chiral dichroism compared to single color elliptical fields. We also describe how one can introduce a new functionality to cHHG: concentration-independent measurement of the enatiomeric excess in a mixture of randomly oriented left-handed and right-handed molecules. Finally, for arbitrary configurations of laser fields, we connect the observables of the cHHG method to the amplitude and phase of chiral response, providing a basis for reconstructing wide range of chiral dynamics from cHHG measurements, with femtosecond to sub-femtosecond temporal resolution.
Cited by in corpus (23)
- Locally and globally chiral fields for ultimate control of chiral light matter interaction
- It is all about phases: ultrafast holographic photoelectron imaging
- Highly selective chiral discrimination in high harmonic generation by dynamical symmetry breaking spectroscopy
- Generalized perspective on chiral measurements without magnetic interactions
- Real-time probing of chirality during a chemical reaction
- Ultrafast chirality: the road to efficient chiral measurements
- Optical chirality in high harmonic generation
- Molecular chirality and its monitoring by ultrafast X-ray pulses
- Time-resolved high harmonic spectroscopy of dynamical symmetry breaking in bi-circular laser fields
- Attosecond control of spin polarization in electron-ion recollision driven by intense tailored fields
- X-Ray sum frequency generation; direct imaging of ultrafast electron dynamics
- Signatures of electronic structure in bi-circular high-harmonic spectroscopy
- Photoinduced molecular chirality probed by ultrafast resonant X-ray spectroscopy
- Probing molecular chirality via laser-induced electronic fluxes
- Strong-field control and enhancement of chiral response in bi-elliptical high-order harmonic generation: an analytical model
- Giant chiro-optical response in high harmonic generation
- Accurate in situ Measurement of Ellipticity Based on Sub-cycle Ionization Dynamics
- Probing structural chirality of crystals using high harmonic generation in solids
- Full-dimensional treatment of short-time vibronic dynamics in molecular high-harmonics generation process in methane
- General theory of photoexcitation induced photoelectron circular dichroism
- Exploring symmetries in photoelectron holography with two-color linearly polarized fields
- Gauge Invariance beyond the Electric Dipole Approximation
- Description of molecular chirality and its analysis with high harmonic generation