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1. Fermionic Mean-Field Theory as a Tool for Studying Spin Hamiltonians

2. Combining complex conjugation, time-reversal, and spin symmetry projection of coupled cluster wave functions

3. Selected non-orthogonal configuration interaction with compressed single and double excitations

4. Linear combinations of cluster mean-field states applied to spin systems

5. Hartree-Fock-Bogoliubov theory for number-parity--violating fermionic Hamiltonians

6. Correlated pair ansatz with a binary tree structure

7. Restoring permutational invariance in the Jordan-Wigner transformation

8. Robust formulation of Wick's theorem for computing matrix elements between Hartree-Fock-Bogoliubov wavefunctions

9. Symmetry-projected cluster mean-field theory applied to spin systems

10. Thermofield theory for finite-temperature electronic structure

11. Exploring Spin AGP Ansatze for Strongly Correlated Spin Systems

12. State preparation of AGP on a quantum computer without number projection

13. Strong-Weak Duality via Jordan-Wigner Transformation: Using Fermionic Methods for Strongly Correlated $su(2)$ Spin Systems

14. AGP-based unitary coupled cluster theory for quantum computers

15. A Power Series Approximation in Symmetry Projected Coupled Cluster Theory

16. Thermal coupled cluster theory for SU(2) systems

17. Coupled cluster and perturbation theories based on a cluster mean-field reference applied to strongly correlated spin systems

18. Construction of linearly independent non-orthogonal AGP states

19. Exploring non-linear correlators on AGP

20. Correlating AGP on a quantum computer

21. Geminal replacement models based on AGP

22. Wave function methods for canonical ensemble thermal averages in correlated many-fermion systems

23. Correlating the Antisymmetrized Geminal Power Wave Function

24. On a dual representation of the Goldstone manifold

25. Exact Parameterization of Fermionic Wave Functions via Unitary Coupled Cluster Theory

26. Efficient evaluation of AGP reduced density matrices

27. Thermofield theory for finite-temperature coupled cluster

28. Geminal-Based Configuration Interaction

29. Thermofield Theory for Finite-Temperature Quantum Chemistry

30. Confronting Racism in Chemistry Journals

31. Update to Our Reader, Reviewer, and Author CommunitiesApril 2020

32. Update to Our Reader, Reviewer, and Author Communities-April 2020.

34. Correlated pair ansatz with a binary tree structure.

35. Hartree–Fock–Bogoliubov theory for number-parity-violating fermionic Hamiltonians.

36. Tensor-decomposition techniques for ab initio nuclear structure calculations. From chiral nuclear potentials to ground-state energies

37. Projected Coupled Cluster Theory: Optimization of cluster amplitudes in the presence of symmetry projection

39. Final Report on Energy Frontier Research Centers: Center for the Computational Design of Functional Layered Materials (CCDM) August 1, 2014 - July 31, 2018; Center for Complex Materials from First Principles (CCM) August 1, 2018 - July 31, 2021

40. On the difference between variational and unitary coupled cluster theories

41. Hartree-Fock symmetry breaking around conical intersections

42. On the Magnetic Structure of Density Matrices

43. Influence of broken-pair excitations on the exact pair wavefunction

44. Tensor-Structured Coupled Cluster Theory

45. Projected Coupled Cluster Theory

46. Spin-Projected Generalized Hartree-Fock as a Polynomial of Particle-Hole Excitations

47. Towards the solution of the many-electron problem in real materials: equation of state of the hydrogen chain with state-of-the-art many-body methods

48. Combining symmetry collective states with coupled cluster theory: Lessons from the Agassi model Hamiltonian

49. Projected Hartree-Fock as a Polynomial of Particle-Hole Excitations and Its Combination With Variational Coupled Cluster Theory

50. Attenuated Coupled Cluster: A Heuristic Polynomial Similarity Transformation Incorporating Spin Symmetry Projection Into Traditional Coupled Cluster Theory

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