We demonstrate that a dual frequency comb-transient absorption (DFC-TA) technique can be combined with a time-domain interferometric detection to measure both the transient absorption and refraction spectra of molecules in solution. To do this, the pump-probe signal field of DFC-TA is allowed to interfere with a time-delayed local oscillator field in a time domain. We show that this DFC interferometric pump-probe spectroscopy (DFC-IPS) technique has a unique ability to extract the phase and amplitude information on the pump-probe signal using just a single-scan data, while conventional techniques require an independent signal measured without the pump field for the normalization of the pump-probe spectrum. As a proof-of-principle experiment...
Unraveling the interplay between electronic- and vibrational degrees of freedom on the earliest time...
International audienceIn order to introduce students to the fascinating field of femtochemistry, we ...
Author Institution: Max-Planck-Institut fur Quantenoptik, Hans-Kopfermann-Stra\ss{}e 1, D-85748 Garc...
We experimentally demonstrate a dual-frequency comb-based transient absorption (DFC-TA) technique, w...
Ultrafast time-resolved dual-comb spectroscopy (TR-DCS) has been demonstrated, which enabl...
Femtosecond time-resolved spectroscopy and frequency-comb spectroscopy have been individually develo...
Real-time pump-probe imaging spectroscopy with femtosecond time resolution is demonstrated. This met...
Ultrafast Transient Absorption Spectroscopy is a powerful tool to reveal excited state dynamics and ...
A variation of density matrix formulation based on the nature of held-matter interference in a mixed...
We introduce cavity enhanced ultrafast transient absorption spectroscopy, which employs frequency co...
Dual-comb spectroscopy (DCS) utilizes two phase-locked optical frequency combs to allow scanless acq...
Dual frequency comb (DFC) nonlinear spectroscopy is an emerging technique that can be used to study ...
We built a transient absorption spectrophotometer that can determine transient absorption spectral c...
Ultrafast optical spectroscopy methods, such as transient absorption spectroscopy and 2D-spectroscop...
Ultrafast spectroscopy on gas phase systems is typically restricted to techniques involving photoion...
Unraveling the interplay between electronic- and vibrational degrees of freedom on the earliest time...
International audienceIn order to introduce students to the fascinating field of femtochemistry, we ...
Author Institution: Max-Planck-Institut fur Quantenoptik, Hans-Kopfermann-Stra\ss{}e 1, D-85748 Garc...
We experimentally demonstrate a dual-frequency comb-based transient absorption (DFC-TA) technique, w...
Ultrafast time-resolved dual-comb spectroscopy (TR-DCS) has been demonstrated, which enabl...
Femtosecond time-resolved spectroscopy and frequency-comb spectroscopy have been individually develo...
Real-time pump-probe imaging spectroscopy with femtosecond time resolution is demonstrated. This met...
Ultrafast Transient Absorption Spectroscopy is a powerful tool to reveal excited state dynamics and ...
A variation of density matrix formulation based on the nature of held-matter interference in a mixed...
We introduce cavity enhanced ultrafast transient absorption spectroscopy, which employs frequency co...
Dual-comb spectroscopy (DCS) utilizes two phase-locked optical frequency combs to allow scanless acq...
Dual frequency comb (DFC) nonlinear spectroscopy is an emerging technique that can be used to study ...
We built a transient absorption spectrophotometer that can determine transient absorption spectral c...
Ultrafast optical spectroscopy methods, such as transient absorption spectroscopy and 2D-spectroscop...
Ultrafast spectroscopy on gas phase systems is typically restricted to techniques involving photoion...
Unraveling the interplay between electronic- and vibrational degrees of freedom on the earliest time...
International audienceIn order to introduce students to the fascinating field of femtochemistry, we ...
Author Institution: Max-Planck-Institut fur Quantenoptik, Hans-Kopfermann-Stra\ss{}e 1, D-85748 Garc...