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1. Electronic spectroscopy of carbon chains (C2n+1, n = 7–10) of astrophysical importance. II. Quantum dynamics.

2. Dissipative tunneling rates through the incorporation of first-principles electronic friction in instanton rate theory. II. Benchmarks and applications.

3. Open quantum systems with nonlinear environmental backactions: Extended dissipaton theory vs core-system hierarchy construction.

4. Optical properties of plasmonic tunneling junctions.

5. Overcoming positivity violations for density matrices in surface hopping.

6. Efficient fully-coherent quantum signal processing algorithms for real-time dynamics simulation.

7. Quasiclassical approaches to the generalized quantum master equation.

8. Simulating energy transfer dynamics in the Fenna–Matthews–Olson complex via the modified generalized quantum master equation.

9. Efficient geometric integrators for nonadiabatic quantum dynamics. II. The diabatic representation.

10. Efficient time-dependent vibrational coupled cluster computations with time-dependent basis sets at the two-mode coupling level: Full and hybrid TDMVCC[2].

11. Zombie cats on the quantum–classical frontier: Wigner–Moyal and semiclassical limit dynamics of quantum coherence in molecules.

12. Sub-system quantum dynamics using coupled cluster downfolding techniques.

13. Multidimensional stochastic dissipative quantum dynamics using a Lindblad operator.

14. A multiscale approach to coupled nuclear and electronic dynamics. II. Exact and approximated evaluation of nonradiative transition rates.

15. PathSum: A C++ and Fortran suite of fully quantum mechanical real-time path integral methods for (multi-)system + bath dynamics.

16. Energetics of the charge generation in organic donor–acceptor interfaces.

17. Efficiency of rovibrational cooling of HeH+ by collisions with He: Cross sections and rate coefficients from quantum dynamics.

18. Calculations of coherent two-dimensional electronic spectra using forward and backward stochastic wavefunctions.

19. Neural networks vs Gaussian process regression for representing potential energy surfaces: A comparative study of fit quality and vibrational spectrum accuracy.

20. Quantum dynamics of hydrogen atoms on graphene. I. System-bath modeling.

21. Improved algorithm for the direct dynamics variational multi-configurational Gaussian method.

22. Zombie states for description of structure and dynamics of multi-electron systems.

23. Temperature dependence of the hydrated electron's excited-state relaxation. I. Simulation predictions of resonance Raman and pump-probe transient absorption spectra of cavity and non-cavity models.

24. A new method to improve the numerical stability of the hierarchical equations of motion for discrete harmonic oscillator modes.

25. Multiconfigurational short-range density functional theory for nuclear magnetic resonance shielding constants with gauge-including atomic orbitals.

26. Toward monitoring the dissipative vibrational energy flows in open quantum systems by mixed quantum–classical simulations.

27. Inchworm Monte Carlo for exact non-adiabatic dynamics. II. Benchmarks and comparison with established methods.

28. The relaxation matrix for symmetric tops with inversion symmetry. II. Line mixing effects in the ν1 band of NH3.

29. First-principles description of intra-chain exciton migration in an oligo(para-phenylene vinylene) chain. I. Generalized Frenkel–Holstein Hamiltonian.

30. Stochastic equation of motion approach to fermionic dissipative dynamics. II. Numerical implementation.

31. Numerical assessment for accuracy and GPU acceleration of TD-DMRG time evolution schemes.

32. Sampling the thermal Wigner density via a generalized Langevin dynamics.

33. Quantum system-bath dynamics with quantum superposition sampling and coupled generalized coherent states.

34. Efficient geometric integrators for nonadiabatic quantum dynamics. I. The adiabatic representation.

35. Radical pair intersystem crossing: Quantum dynamics or incoherent kinetics?

36. Quantum dynamics and spectroscopy of dihalogens in solid matrices. I. Efficient simulation of the photodynamics of the embedded I2Kr18 cluster using the G-MCTDH method.

37. Modular path integral methodology for real-time quantum dynamics.

38. A quantum mechanical insight into SN2 reactions: Semiclassical initial value representation calculations of vibrational features of the Cl−⋯CH3Cl pre-reaction complex with the VENUS suite of codes.

39. Non-equilibrium x-ray spectroscopy using direct quantum dynamics.

40. On-the-fly adiabatically switched semiclassical initial value representation molecular dynamics for vibrational spectroscopy of biomolecules.

41. Excited state dynamics in SO2. III. An ab initio quantum study of single- and multi-photon ionization.

42. The effect of sampling techniques used in the multiconfigurational Ehrenfest method.

43. A unified stochastic formulation of dissipative quantum dynamics. II. Beyond linear response of spin baths.

44. Solving the Wigner equation with signed particle Monte Carlo for chemically relevant potentials.

45. Accurate non-adiabatic quantum dynamics from pseudospectral sampling of time-dependent Gaussian basis sets.

46. Pseudospectral Gaussian quantum dynamics: Efficient sampling of potential energy surfaces.

47. Stark-assisted quantum confinement of wavepackets. A coupling of nonadiabatic interaction and CW-laser.

48. Quantum dynamical study of femtosecond photodesorption of CO from TiO2(110).

49. Equation of state and force fields for Feynman–Hibbs-corrected Mie fluids. II. Application to mixtures of helium, neon, hydrogen, and deuterium.

50. WaveTrain: A Python package for numerical quantum mechanics of chain-like systems based on tensor trains.