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arXiv research

A locally-built, LLM-digested index of recent arXiv papers in quant finance, geometry/topology, and statistical ML — keyword search served straight from SQLite on this machine.

169,341 papers · 148 categories

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48 results for exact computations

Researchers found unique exact Lagrangian fillings for a specific type of knot.

problem Tackling the uniqueness of exact Lagrangian fillings for Legendrian (2,n)(2,n) torus knots.
method Computed augmentations induced by exact Lagrangian fillings to distinguish them.
result Identified that these exact Lagrangian fillings are pairwise non-isotopic.

Exact Bayesian inference for discrete models using probability generating functions.

problem Discrete statistical models with infinite support and continuous priors.
method Probabilistic programming language with automatic differentiation and probability generating functions.
result Genfer tool provides exact solutions for a wide range of inference problems.

Develops a new algorithm for computing exact Wasserstein distance efficiently.

problem High computational complexity of exact Wasserstein distance computation.
method Inexact Proximal Point Method (IPOT) with approximate projections to the probability simplex.
result Algorithm converges to exact Wasserstein distance with theoretical guarantees and robust regularization parameter selection.

Exact second-order optimization for deep learning reduces computational cost and improves performance.

problem Inadequate use of second-order optimization methods in deep learning due to high computational cost and non-convexity.
method Developed an exact stochastic second-order Newton method that addresses the non-convexity issue and provides an expression for the stochastic Hessian.
result Exact second-order Newton direction formula and its application in deep learning datasets.

Paper shows approximate Dirichlet domain works as well as exact one for tiling hyperbolic balls.

problem Empirical success of SnapPea's length spectrum algorithm despite using approximate data.
method Showed under certain conditions, approximate Dirichlet domain can perform equivalently to exact one.
result Empirical success of SnapPea's length spectrum algorithm explained.

Researchers create an exact entangling gate using braiding and measurement of Fibonacci anyons.

problem No known leakage-free entangling gate using braiding of Fibonacci anyons.
method Supplement braiding with measurement operations to produce an exact controlled rotation gate.
result Exact entangling gate on two qubits created using Fibonacci anyons and measurement.

Study corrects previous computation of Lagrangian topology in Calabi-Yau threefold.

problem Correcting a previous computation of the topology of a real Lagrangian in Schoen's Calabi-Yau threefold.
method Used two methods to compute mod 2 cohomology: Mayer-Vietoris calculation and an exact sequence.
result Agreement between the two methods confirms the topology of the real Lagrangian.

Federated learning supports exact support recovery with minimal communication.

problem Learning the exact support of sparse linear regression in federated learning.
method One-shot communication algorithm for exact support recovery without optimization.
result Polynomial sample complexity and logarithmic number of clients required.

Exact Gaussian Processes for massive datasets using non-stationary sparsity-discovering kernels.

problem High computational and storage costs for exact GPs in large datasets.
method Develop non-stationary kernels that allow the GP to discover sparse structure naturally.
result Exact Gaussian Processes scalable to over 5 million data points.

This paper explores the computational hardness of generating latent vectors for generative models.

problem Computational hardness of generating latent vectors for generative models.
method Established lower bounds for exact and approximate model inversion under strong exponential time hypothesis (SETH) and exponential time hypothesis (ETH).
result Lower bounds for computational complexity of exact and approximate model inversion.

Study on stable torsion length in groups, showing it vanishes in crystallographic groups and providing algorithms for computation.

problem Understanding the stable torsion length in groups, especially in crystallographic and free products of groups.
method Developed linear programming and exact algorithms to compute stable torsion length in free products of groups and finite groups.
result Showed that stable torsion length vanishes in crystallographic groups and provided exact computations for nontrivial examples.

W. Thurston suggested a method for computing hyperbolic volume of hyperbolic 3-manifolds, based on a triangulation of the manifold. The method was implemented by J. Weeks in the program SnapPea, which produces a decimal approximation as a result. For hyperbolic 2-bridge links, we give formulae that allow one to find th…

2012-11-21abs ↗pdf ↗

We show a connection between a surgery exact sequence in knot Floer homology and the sequence derived in [18]. As a consequence of this relationship we see that the exact sequence in [18] also works with coherent orientations and admits refinements with respect to spinc-structures. As an application of this discussion,…

2010-02-22abs ↗pdf ↗

PixelCNN models can achieve state-of-the-art results on CIFAR-10 with exact likelihood computation.

problem Dequantization gap in modeling discrete data like images.
method Introducing subset flows to allow exact computation of likelihoods for discrete data.
result PixelCNN models trained with exact likelihood computation achieve state-of-the-art results on CIFAR-10.

Paper explores limits of exact inference in structured prediction models.

problem Exact recovery of true labels in graph-based structured prediction models.
method Analyzes necessary and sufficient conditions for exact recovery using maximum likelihood estimation.
result Derives tight conditions for exact recovery, revealing a gap with computationally tractable methods.

The article provides obstructions for exact submanifolds in symplectic applications.

problem Existence of exact submanifolds with specific homology classes.
method Study of formal deformations of the de Rham complex to compute obstructions.
result Symplectic manifolds like Kähler and Kodaira-Thurston admit no non-separating exact hypersurfaces.

A new parallel BO method with exact gradients for multi-objective optimization.

problem Efficiently optimizing multiple objectives in a sample-efficient manner.
method Derive q-Expected Hypervolume Improvement (qEHVI) for parallel, constrained evaluation.
result qEHVI is computationally tractable and outperforms state-of-the-art methods.

Develops a fast algorithm for high-dimensional LASSO penalized quantile regression.

problem Computational challenges in high-dimensional 1\ell_1 penalized quantile regression.
method Pathwise coordinate descent algorithm to solve exact coordinatewise minimum of the nonsmooth loss function.
result Algorithm runs faster than existing alternatives and maintains estimation accuracy.

Exact solution for sparse-reward MDPs with minimal state space dependence.

problem Finding optimal policies for MDPs with sparse rewards and large state spaces.
method Proposes an algorithm with time complexity O(R3imesA2)O( |R|^3 imes |A|^2 ) and memory complexity O(RimesA)O( |R| imes |A| ) for exact computation.
result Exact policy computation without state space dependency for sparse-reward MDPs.

This work extends knot homology theory to links, proving exact triangles and categorifying link signatures.

problem Extending knot homology theory to links and proving exact triangles.
method Equivariant singular instanton Floer theory, circle-equivariant Morse-Floer theory, cobordism constructions.
result Established unoriented skein exact triangles and categorified link signatures.

This paper computes exact posterior distributions of mixture weights in hierarchical Bayesian models.

problem Uncertainty in class membership or data-generating processes in heterogeneous data.
method Exact marginalization of mixture weights using dynamic programming and FFT for two components, and joint dynamic program for K >= 3 components.
result Exact posterior distributions of mixture weights are finite mixtures of Beta distributions, providing credible intervals and per-observation local false-discovery rates.

TERA method speeds up derivative Gaussian processes in high dimensions.

problem High-dimensional function evaluations and gradient computations are computationally expensive.
method TERA uses exact gradient reduction to decouple nn and dd from the computational cost.
result TERA achieves state-of-the-art predictive accuracy with orders of magnitude faster computation.

Cardinality potentials are a generally useful class of high order potential that affect probabilities based on how many of D binary variables are active. Maximum a posteriori (MAP) inference for cardinality potential models is well-understood, with efficient computations taking O(DlogD) time. Yet efficient marginalizat…

2012-10-16abs ↗pdf ↗

The exact nonnegative matrix factorization (exact NMF) problem is the following: given an mm-by-nn nonnegative matrix XX and a factorization rank rr, find, if possible, an mm-by-rr nonnegative matrix WW and an rr-by-nn nonnegative matrix HH such that X=WHX = WH. In this paper, we propose two heuristics for exac…

2014-11-26abs ↗pdf ↗

Exact causal network discovery is polynomial for sparse networks.

problem Finding the optimal causal Bayesian network from data is computationally hard.
method Pruning the search space using network properties, combined with dynamic programming and shortest-path searches.
result Exact discovery is polynomial for sparse causal Bayesian networks.

Researchers found a new exact solution for pricing Aunt Michaela options using modified Black-Scholes equation.

problem Pricing Aunt Michaela options with a specific maturity condition.
method Computed a new exact series solution of a modified Black-Scholes equation using Maple.
result The modified Black-Scholes equation with Aunt Michaela option is exactly solvable using associated Laguerre polynomials or Whittaker M functions.

Graph-based active learning improves with a new algorithm that balances exploration and exploitation.

problem Graph-based active learning algorithms based on expected error minimization (EEM) often use approximations due to computational hardness, leading to suboptimal performance.
method Proposes TSA (Two-Step Approximation) algorithm that efficiently balances exploration and exploitation with similar computational complexity.
result Empirically shows that balancing exploration and exploitation improves performance in both toy and real-world datasets.