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1. Exploiting Finite Geometries for Better Quantum Advantages in Mermin-Like Games

2. Fluctuations, uncertainty relations, and the geometry of quantum state manifolds

3. Segmented strings and holography

4. Cluster algebraic description of entanglement patterns for the BTZ black hole

5. The associahedron as a holographic entanglement polytope

6. $X$-States From a Finite Geometric Perspective

7. Scanning space-time with patterns of entanglement

8. Berry curvature, horocycles and scattering states in $AdS_3/CFT_2$

10. A finite geometric toy model of space-time as an error correcting code

12. A fermionic code related to the exceptional group $E_8$

13. The magic three-qubit Veldkamp line: A finite geometric underpinning for form theories of gravity and black hole entropy

14. Mermin pentagrams arising from Veldkamp lines for three qubits

16. The Coupled Cluster Method and Entanglement

17. Embedding qubits into fermionic Fock space, peculiarities of the four-qubit case

18. Classification of multipartite systems featuring only $|W\rangle$ and $|GHZ\rangle$ genuine entangled states

19. Coffman-Kundu-Wootters inequality for fermions

21. Entanglement classification of three fermions with up to nine single-particle states

22. A Notable Relation between $N$-Qubit and $2^{N-1}$-Qubit Pauli Groups via Binary ${\rm LGr}(N,2N)$

23. Entanglement in fermionic Fock space

24. Grassmannian Connection Between Three- and Four-Qubit Observables, Mermin's Contextuality and Black Holes

25. Hitchin functionals are related to measures of entanglement

26. 'Magic' Configurations of Three-Qubit Observables and Geometric Hyperplanes of the Smallest Split Cayley Hexagon

27. Charting the Real Four-Qubit Pauli Group via Ovoids of a Hyperbolic Quadric of PG(7,2)

28. Mermin's Pentagram as an Ovoid of PG(3,2)

29. Qubits from extra dimensions

30. Two-Center Black Holes, Qubits and Elliptic Curves

31. STU attractors from vanishing concurrence

32. Invertible Symmetric 3 x 3 Binary Matrices and GQ(2,4)

33. STU Black Holes as Four Qubit Systems

34. The attractor mechanism as a distillation procedure

35. Balanced Tripartite Entanglement, the Alternating Group A4 and the Lie Algebra $sl(3,C) \oplus u(1)$

36. Geometric Hyperplanes of the Near Hexagon L_3 times GQ(2, 2)

37. The Veldkamp space of multiple qubits

38. The Veldkamp Space of GQ(2,4)

39. Black Hole Entropy and Finite Geometry

40. Special entangled quantum systems and the Freudenthal construction

41. Three-Qubit Operators, the Split Cayley Hexagon of Order Two and Black Holes

42. A study of two-qubit density matrices with fermionic purifications

43. Three fermions with six single particle states can be entangled in two inequivalent ways

44. A three-qubit interpretation of BPS and non-BPS STU black holes

45. Strings, black holes, the tripartite entanglement of seven qubits and the Fano plane

46. On the geometry of four qubit invariants

47. Stringy Black Holes and the Geometry of Entanglement

48. Geometric Phases

49. On the geometry of a class of N-qubit entanglement monotones

50. An elementary formula for entanglement entropies of fermionic systems

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