Attosecond delays in molecular X-ray ionization – Nature

  • Hassler, S. and colleagues. Near-threshold attosecond photoionization of molecular nitrogen with phase resolution. Physics Rev. A 80011404 (2009).

    Article ADS Google Scholar

  • Huppert, M., Jordan, I., Baykusheva, D., Conta, A. & Wörner, HJ Attosecond delay in molecular photoionization. Physic Rev. Lett 117093001 (2016).

    Article ADS PubMed Google Scholar

  • Vos, J. et al. Stereo Wigner time delay dependent on electron orientation and localization in a small molecule. science 3601326–1330 (2018).

    Article ADS CAS PubMed Google Scholar

  • Biswas, S. et al. Probing the molecular environment through light emission delay Physics Nat 16778-783 (2020).

    Article CAS Google Scholar

  • Kamaloff, A., Wang, AL, Buxbaum, PH, Hoxton, DJ and Cryan, J.2. Physics Rev. A 102023118 (2020).

    Article ADS CAS Google Scholar

  • Nandy, S. et al. Attosecond time of electron emission from resonance of molecular form. Scientific Adv. 6eaba7762 (2020).

    Article ADS CAS PubMed PubMed Central Google Scholar

  • Heck, S. et al. Attosecond interferometry of shape resonances in CF recoil frame4. Scientific Adv. 7eabj8121 (2021).

    Article ADS CAS PubMed PubMed Central Google Scholar

  • Véniard, V., Taïeb, R. & Maquet, A. Fuzzy dependency (N+1) – Color (N>1) IR-UV photoionization of higher harmonic atoms. Physics Rev. A 54721 (1996).

    Article ADS PubMed Google Scholar

  • Paul, PM et al. Observation of a train of attosecond pulses of high harmonic generation. science 2921689-1692 (2001).

    Article ADS CAS PubMed Google Scholar

  • Kinberger, R. et al. Atomic transient recorder nature 427817-821 (2004).

    Article ADS CAS PubMed Google Scholar

  • Schultze, M. and colleagues. Light emission delay. science 3281658-1662 (2010).

    Article ADS CAS PubMed Google Scholar

  • Klünder, K. et al. Probing single-photon ionization on the attosecond time scale. Physic Rev. Lett 106143002 (2011).

    Article ADS PubMed Google Scholar

  • Scientific Background of the 2023 Nobel Prize in Physics. https://www.nobelprize.org/prizes/physics/2023/advanced-information/ (Nobel Physics Committee, 2023).

  • Osiander, M. et al. Autosecond correlation dynamics Physics Nat 13280–285 (2017).

    Article CAS Google Scholar

  • Issinger, M. and colleagues. Photoionization in time and frequency domains science 358893–896 (2017).

    Article ADS CAS PubMed Google Scholar

  • Mänsson, EP et al. Double ionization was investigated on the attosecond time scale. Physics Nat 10207-211 (2014).

    Google Scholar article

  • Groson, V. et al. Attosecond dynamics via Fano resonance: monitoring the birth of a photoelectron science 354734-738 (2016).

    Article ADS CAS PubMed Google Scholar

  • Couture, M. and colleagues. Fano resonance spectral phase measurement using tunable attosecond pulses. Common Nat 710566 (2016).

    Article ADS CAS PubMed PubMed Central Google Scholar

  • Cirelli, C. et al. The propagation time of anisotropic light is delayed close to the Fano resonance. Common Nat 9955 (2018).

    Article ADS PubMed PubMed Central Google Scholar

  • Peschel, J. et al. Attosecond dynamics of multichannel single photon ionization Common Nat 135205 (2022).

    Article ADS CAS PubMed PubMed Central Google Scholar

  • Pazourek, R., Nagele, S. & Burgdörfer, J. Attosecond chronoscopy of photoemission. Rev. Mod. physics 87765–802 (2015).

    Article ADS MathSciNet CAS Google Scholar

  • Dahlström, JM et al. Theory of attosecond delays in laser-assisted photoionization Chemistry. physics 41453-64 (2013).

    Google Scholar article

  • Zipp, LJ, Natan, A. & Bucksbaum, PH Probing electron delays in above-threshold ionization. a light 1361-364 (2014).

    Article ADS CAS Google Scholar

  • Dorris, J. et al. Isolated attosecond X-ray pulses with maximum gigawatt power from a tunable free electron laser. Nat Foton. 1430–36 (2020).

    MathSciNet CAS Google Scholar Article

  • Itatani, J. et al. Attosecond streak camera. Physic Rev. Lett 88173903 (2002).

    Article ADS CAS PubMed Google Scholar

  • Hartman, N. et al. Attosecond time-energy structure of X-ray free electron laser pulses Nat Foton. 12215–220 (2018).

    Article ADS CAS Google Scholar

  • Eckel, P. et al. Measurement of attosecond ionization time and tunneling delay in helium science 3221525-1529 (2008).

    Article ADS CAS PubMed Google Scholar

  • Lee, S. et al. Attosecond electron coherent motion in Auger-Meittner decay. science 375285-290 (2022).

    Article ADS CAS PubMed Google Scholar

  • Serov, VV, Derbov, VL & Sergeeva, TA Interpretation of time delay in ionization of two-center systems. Physics Rev. A 87063414 (2013).

    Article ADS Google Scholar

  • Zholents, AA method of an enhanced spontaneous emission for X-ray free electron lasers. Physics Rev. ST Accel. arrows 8040701 (2005).

    Article ADS Google Scholar

  • Lee, S. et al. Coaxial velocity map imaging spectrometer for electrons. AIP Adv. 8115308 (2018).

    Article ADS Google Scholar

  • Glonia, JM et al. Time-resolved pump-probe experiments at LCLS. Choose Express 1817620–17630 (2010).

    Article ADS CAS PubMed Google Scholar

  • Johnson, RA and Weichern, DW Applied multivariate statistical analysis 6th ed. 409-410 (Pearson, 2007).

  • Kosugi, N., Adachi, J.-i., Shigemasa, E. & Yagishita, A. High resolution and symmetry resolved N and O KThe edge absorption spectrum of NO. J. Chemistry. physics 978842-8849 (1992).

    Article ADS CAS Google Scholar

  • Rudel, A. and colleagues. Cross-exchange effects in NO nuclear surface photoionization cross sections New J. physics 7189-189 (2005).

    Article ADS Google Scholar

  • Pazourek, R., Nagele, S. & Burgdörfer, J. Time-resolved photoemission on the attosecond scale: opportunities and challenges. Faraday’s discussion 163353-376 (2013).

    Article ADS CAS PubMed Google Scholar

  • Baykusheva, D. & Wörner, HJ Theory of attosecond delays in molecular photoionization. J. Chemistry. physics 146124306 (2017).

    Article ADS PubMed Google Scholar

  • Banks, H., Little, D., Tennyson, J. & Emmanouilidou, A. Interaction of molecular nitrogen with free electron-laser irradiation. Chemical physics. Chemistry. physics 1919794–19806 (2017).

    Article CAS PubMed Google Scholar

  • Gaussian basis sets Dunning, TH, Jr. For use in related molecular calculations. I. Boron atoms through neon and hydrogen. J. Chemistry. physics 901007-1023 (1989).

    Article ADS CAS Google Scholar

  • Piancastelli, MN The never-ending story of shape resonances. J. Electron Spectr. related phenomenon 100167-190 (1999).

    Article ADS CAS Google Scholar

  • Mountney, ME et al. Linear single-electron ionization in open-shell molecules driven by X-ray pulses. Physics Rev. A 107063111 (2023).

    Article ADS CAS Google Scholar

  • Lee, WB et al. Light emission in the molecular frame of NO due to elliptically polarized light of high N(1) soft X-rays.Q)-1 and O(1Q)-1 Ionization Threshold Physics Rev. A 75052718 (2007).

    Article ADS Google Scholar

  • Breidbach, J. & Cederbaum, LS Global attosecond response to one-electron removal. Physic Rev. Lett 94033901 (2005).

    Article ADS CAS PubMed Google Scholar

  • Lin, P. & Lucchese, RR Theoretical studies of nuclear excitation and ionization in molecular systems. J. Synchrotron Radiation. 8150-153 (2001).

    Article CAS PubMed Google Scholar

  • Rusk, A. and Mehlhorn, W. Post-collision interaction and Auger line shape. J. Phys. B in. Mol. physics 19911 (1986).

    Article ADS CAS Google Scholar

  • Argenti, L. et al. Controlling the delay of light emission in the transmission of two resonator photons. Physics Rev. A 95043426 (2017).

    Article ADS Google Scholar

  • Cattaneo, L. et al. Paired electron and nuclear dynamics in dissociative ionization of H2. Physics Nat 14733-738 (2018).

    Article CAS Google Scholar

  • Wang, AL et al. The role of nuclear-electronic coupling in the attosecond photoionization of H2. Physics Rev. A 104063119 (2021).

    Article ADS CAS Google Scholar

  • Borràs, VJ, González-Vázquez, J., Argenti, L. & Martín, F. Attosecond photoionization delays in the vicinity of molecular Feshbach resonances. Scientific Adv. 9eade3855 (2023).

    Article ADS PubMed PubMed Central Google Scholar

  • Hammerland, D. et al. Bond length dependence of attosecond ionization delays in O2 caused by electron correlation to form resonance. Scientific Adv. 10eadl3810 (2024).

    Article CAS PubMed PubMed Central Google Scholar

  • Driver, T. Attosecond delays in X-ray molecular ionization. Fig https://figshare.com/projects/Attosecond_Delays_in_X-ray_Molecular_Ionization/206401 (2024)

  • #Attosecond #delays #molecular #Xray #ionization #Nature

    Leave a Comment

    Your email address will not be published. Required fields are marked *

    Scroll to Top