[1] Baker S, Robinson JS, Haworth CA, Teng H, Smith RA, Chirilă CC, Lein M, Tisch JWG, Marangos JP. Probing proton dynamics in molecules on an attosecond time scale. Science. 2006;312(5772):424–427.
[3] He L, Lan P, Le A-T, Wang B, Wang B, Zhu X, Lu P, Lin CD. Real-time observation of molecular spinning with angular high-harmonic spectroscopy. Phys Rev Lett. 2018;121: Article 163201.
[4] Wolter B, Pullen MG, Le A-T, Baudisch M, Doblhoff-Dier K, Senftleben A, Hemmer M, Schröter CD, Ullrich J, Pfeifer T, et al. Ultrafast electron diffraction imaging of bond breaking in di-ionized acetylene. Science. 2016;354(6310):308–312.
[5] Yang J, Zhu X, Wolf TJ, Li Z, Pedro Nunes JF, Coffee R, Cryan JP, Gühr M, Hegazy K, Heinz TF, et al. Imaging CF3I conical intersection and photodissociation dynamics with ultrafast electron diffraction. Science. 2018;361(6397):64–67.
[6] Minitti MP, Budarz JM, Kirrander A, Robinson JS, Ratner D, Lane TJ, Zhu D, Glownia JM, Kozina M, Lemke HT, et al. Imaging molecular motion: Femtosecond X-ray scattering of an electrocyclic chemical reaction. Phys Rev Lett. 2015;114: Article 255501.
[7] Huismans Y, Rouzée A, Gijsbertsen A, Jungmann JH, Smolkowska AS, Logman PSWM, Lépine F, Cauchy C, Zamith S, Marchenko T, et al. Time-resolved holography with photoelectrons. Science. 2011;331(6013):61–64.
[8] Li M, Xie H, Cao W, Luo S, Tan J, Feng Y, Du B, Zhang W, Li Y, Zhang Q, et al. Photoelectron holographic interferometry to probe the longitudinal momentum offset at the tunnel exit. Phys Rev Lett. 2019;122: Article 183202.
[9] Xie W, Yan J, Li M, Cao C, Guo K, Zhou Y, Lu P. Picometer-resolved photoemission position within the molecule by strong-field photoelectron holography. Phys Rev Lett. 2021;127: Article 263202.
[10] Geßner O, Lee AM, Shaffer JP, Reisler H, Levchenko SV, Krylov AI, Underwood JG, Shi H, East AL, Wardlaw DM, et al. Femtosecond multidimensional imaging of a molecular dissociation. Science. 2006;311(5758):219–222.
[11] Sandhu AS, Gagnon E, Santra R, Sharma V, Li W, Ho P, Ranitovic P, Cocke CL, Murnane MM, Kapteyn HC. Observing the creation of electronic Feshbach resonances in soft X-ray-induced O2 dissociation. Science. 2008;322(5904):1081–1085.
[12] Bisgaard CZ, Clarkin OJ, Wu G, Lee AMD, Geßner O, Hayden CC, Stolow A. Time-resolved molecular frame dynamics of fixed-in-space CS2 molecules. Science. 2009;323(5920):1464–1468.
[13] von Conta A, Tehlar A, Schletter A, Arasaki Y, Takatsuka K, Wörner HJ. Conical-intersection dynamics and ground-state chemistry probed by extreme-ultraviolet time-resolved photoelectron spectroscopy. Nat Commun. 2018;9:3162.
[14] Yu M, Liu K, Li M, Yan J, Cao C, Tan J, Liang J, Guo K, Cao W, Lan P, et al. Full experimental determination of tunneling time with attosecond-scale streaking method. Light Sci Appl. 2022;11:215.
[15] Pan S, Hu C, Zhang Z, Lu P, Lu C, Zhou L, Wang J, Sun F, Qiang J, Li H, et al. Low-energy protons in strong-field dissociation of H2+ via dipole-transitions at large bond lengths. Ultrafast Sci. 2022;2022:9863548.
[17] Jadoun D, Kowalewski M. Tracking conical intersections with nonlinear x-ray Raman spectroscopy. Ultrafast Sci. 2022;2022:0003.
[18] Li W, Zhou X, Lock R, Patchkovskii S, Stolow A, Kapteyn HC, Murnane MM. Time-resolved dynamics in N2O4 probed using high harmonic generation. Science. 2008;322(5905):1207–1211.
[20] Kobayashi T, Saito T, Ohtani H. Real-time spectroscopy of transition states in bacteriorhodopsin during retinal isomerization. Nature. 2001;414:531–534.
[22] Pan S, Hu C, Zhang W, Zhang Z, Zhou L, Lu C, Lu P, Ni H, Wu J, He F. Rabi oscillations in a stretching molecule. Light Sci Appl. 2023;12:35.
[23] Gagnon E, Ranitovic P, Tong X-M, Cocke CL, Murnane MM, Kapteyn HC, Sandhu AS. Soft x-ray-driven femtosecond molecular dynamics. Science. 2007;317(5843):1374–1378.
[24] Santra R, Zobeley J, Cederbaum LS, Moiseyev N. Interatomic coulombic decay in van der Waals clusters and impact of nuclear motion. Phys Rev Lett. 2000;85:4490–4493.
[25] Jahnke T, Czasch A, Schöffler MS, Schössler S, Knapp A, Käsz M, Titze J, Wimmer C, Kreidi K, Grisenti RE, et al. Experimental observation of interatomic coulombic decay in neon dimers. Phys Rev Lett. 2004;93: Article 163401.
[26] Kuleff AI, Cederbaum LS. Tracing ultrafast interatomic electronic decay processes in real time and space. Phys Rev Lett. 2007;98: Article 083201.
[27] Sisourat N, Kryzhevoi NV, Kolorenc P, Scheit S, Jahnke T, Cederbaum LS. Ultralong-range energy transfer by interatomic coulombic decay in an extreme quantum system. Nat Phys. 2010;6:508–511.
[29] Natan A, Ware MR, Prabhudesai VS, Lev U, Bruner BD, Heber O, Bucksbaum PH. Observation of quantum interferences via light-induced conical intersections in diatomic molecules. Phys Rev Lett. 2016;116: Article 143004.
[30] Kübel M, Spanner M, Dube Z, Naumov AY, Chelkowski S, Bandrauk AD, Vrakking MJ, Corkum PB, Villeneuve DM, Staudte A. Probing multiphoton light-induced molecular potentials. Nat Commun. 2020;11:2596.
[31] Zhang SB, Wu Y, Wang JG. Time-dependent quantum wave packet dynamics to study charge transfer in heavy particle collisions. J Chem Phys. 2016;145: Article 224306.
[34] Buenker RJ, Peyerimhoff SD. Individualized configuration selection in CI calculations with subsequent energy extrapolation. Theor Chim Acta. 1974;35:33–58.
[35] De S, Magrakvelidze M, Bocharova IA, Ray D, Cao W, Znakovskaya I, Li H, Wang Z, Laurent G, Thumm U, et al. Following dynamic nuclear wave packets in N2, O2 and CO with few-cycle infrared pulses. Phys Rev A. 2011;84: Article 043410.
[36] Sen A, Sairam T, Sahu SR, Bapat B, Gopal R, Sharma V. Hindered alignment in ultrashort, intense laser-induced fragmentation of O2. J Chem Phys. 2020;152:014302.
[37] Xue S, Du H, Hu B, Lin CD, Le AT. Following coherent multichannel nuclear wave packets in pump-probe studies of O2 with ultrashort laser pulses. Phys Rev A. 2018;97: Article 043409.
[38] Alnaser AS, Voss S, Tong XM, Maharjan CM, Ranitovic P, Ulrich B, Osipov T, Shan B, Chang Z, Cocke CL. Effects of molecular structure on ion disintegration patterns in ionization of O2 and N2 by short laser pulses. Phys Rev Lett. 2004;93: Article 113003.
[39] Tong XM, Zhao ZX, Alnaser AS, Voss S, Cocke CL, Lin CD. Post ionization alignment of the fragmentation of molecules in an ultrashort intense laser field. J Phys B Atomic Mol Phys. 2005;38:333–341.
[41] Pavičić D, Lee KF, Rayner DM, Corkum PB, Villeneuve DM. Direct measurement of the angular dependence of ionization for N2, O2 and CO2 in intense laser fields. Phys Rev Lett. 2007;98: Article 243001.
[42] Hu X, Jia C, Xu T, Wu Y, Wang J. Full quantum time-dependent simulations for the two-body breakups of H2Ar2+ and N2Ar2+. Phys Rev A. 2022;106: Article 012814.
[43] Murray R, Liu W-K, Ivanov MY. Partial Fourier-transform approach to tunnel ionization: Atomic systems. Phys Rev A. 2010;81: Article 023413.
[44] Murray R, Spanner M, Patchkovskii S, Ivanov MY. Tunnel ionization of molecules and orbital imaging. Phys Rev Lett. 2011;106: Article 173001.
[45] Xu H, He F, Kielpinski D, Sang R, Litvinyuk I. Experimental observation of the elusive double-peak structure in R-dependent strong-field ionization rate of H2+. Sci Rep. 2015;5:13527.
[46] Liu H, Zhao SF, Li M, Deng Y, Wu C, Zhou XX, Gong Q, Liu Y. Molecular-frame photoelectron angular distributions of strong-field tunneling from inner orbitals. Phys Rev A. 2013;88:061401(R).
[47] Sun S, Yang Y, Zhang J, Wu H, Chen Y, Zhang S, Jia T, Wang Z, Sun Z. Ejection of triatomic molecular ion H3+ from methyl chloride in an intense femtosecond laser field. Chem Phys Lett. 2013;581:16–20.