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  1. Diffusion CFTP.py (4266 bytes)
    4: ... program in the series started by [[Diffusion.py |Diffusion.py]], we consider a particle diffusing on a path ...
    6: [[Image:One d cftp.png|left|600px|border|Coupling-from-the-past approach...
    34: plt.savefig('backward_position_t0.png')
    43: [[Image:Backward position t0.png|left|600px|border|Coupling-from-the-past approach...
  2. Diffusion.py (2640 bytes)
    6: [[Image:One d single.png|left|600px|border|Diffusion on a path graph with 5 sites.]]
    21: plt.title('diffusion starting at $x=0$, $t = $' + str(tmax))
    23: plt.savefig('diffusion.png')
    32: [[Image:Diffusion.png|left|600px|border|Histogram of output after 10 st...
  3. Diffusion forward.py (1357 bytes)
    4: ...ositions. As in [[Diffusion.py| the naive program Diffusion.py]], arrows go "down", "straight" and "up" with ...
    22: plt.savefig('ForwardCoupling.png')
  4. Diffusion CFTP coupl pos.py (1094 bytes)
    28: plt.savefig('backward_coupling_position.png')

Page text matches

  1. Publications WK (19228 bytes)
    111: ...Bowick, W. Krauth, J. Schwarz, X. Xing, ''Vacancy diffusion in the triangular lattice dimer model'' Physical ...
  2. Jeng Bowick Krauth Schwarz Xing 2008 (1466 bytes)
    1: ...k, W. Krauth, J. Schwarz, X. Xing''' '''''Vacancy diffusion in the triangular lattice dimer model''''' Physic...
    4: We study vacancy diffusion on the classical triangular lattice dimer model, ...
    8: ...ility of being delocalized. When delocalized, the diffusion of
    10: ...lusters of three or four monomers, as well as the diffusion of dimers at
    13: mechanism for diffusion of monomer pairs, where a subtle interplay betwee...
  3. ECMC 2021 Monemvassitis (1377 bytes)
    12: ...ministic Markov Processes: A General Class of Non-Diffusion Stochastic Models.” Journal of the Royal Statis...
  4. TVDTemperingLift.py (3545 bytes)
    3: ...ous lecture, we had started the discussion of the diffusion on the path graph P_n, in other words the one-dim...
  5. Diffusion CFTP.py (4266 bytes)
    4: ... program in the series started by [[Diffusion.py |Diffusion.py]], we consider a particle diffusing on a path ...
    6: [[Image:One d cftp.png|left|600px|border|Coupling-from-the-past approach...
    34: plt.savefig('backward_position_t0.png')
    43: [[Image:Backward position t0.png|left|600px|border|Coupling-from-the-past approach...
  6. BegRohu Lectures 2024 (4069 bytes)
    34: [[Image:One d cftp.png|left|600px|border|Coupling-from-the-past approach...
    48: [[Diffusion.py | Diffusion.py]] x
    50: [[Diffusion_forward.py | Diffusion_forward.py]]
    52: [[Diffusion_CFTP_coupl_pos.py | Diffusion_CFTP_coupl_pos.py]]
    54: [[Diffusion CFTP.py | Diffusion CFTP.py]] x β
  7. Diffusion.py (2640 bytes)
    6: [[Image:One d single.png|left|600px|border|Diffusion on a path graph with 5 sites.]]
    21: plt.title('diffusion starting at $x=0$, $t = $' + str(tmax))
    23: plt.savefig('diffusion.png')
    32: [[Image:Diffusion.png|left|600px|border|Histogram of output after 10 st...
  8. Diffusion forward.py (1357 bytes)
    4: ...ositions. As in [[Diffusion.py| the naive program Diffusion.py]], arrows go "down", "straight" and "up" with ...
    22: plt.savefig('ForwardCoupling.png')
  9. Stopping circle.py (2892 bytes)
    4: ...g]] and for [[particle diffusion on a path graph| Diffusion_CFTP.py]], and in the present Lecture 5, we will ...
    47: * The [[Diffusion CFTP.py |coupling from the past approach]] discus...

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