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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.

168,742 papers · 148 categories

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126251377502 · Jun 202019922001200920172026
48 results for fractional covering numbers

We establish a relationship between Heegaard Floer homology and the fractional Dehn twist coefficient of surface automorphisms. Specifically, we show that the rank of the Heegaard Floer homology of a 3-manifold bounds the absolute value of the fractional Dehn twist coefficient of the monodromy of any of its open book d…

2015-01-06abs ↗pdf ↗

The study quantifies how many objects can be linearly classified under all views.

problem Understanding the expressivity of group-equivariant representations.
method Generalization of Cover's Function Counting Theorem to quantify separable dichotomies.
result The fraction of separable dichotomies is determined by the fixed space dimension of the group action.

Explains optimal functional inequalities, focusing on Sobolev and fractional Sobolev.

problem Optimal functional inequalities and their stability.
method Compactness theorems, characterization of optimizers, and quantitative stability analysis.
result Characterization and stability of optimizers for Sobolev inequalities and their fractional generalizations.

Random covers of surfaces have tangle-free monodromy and the Putman-Wieland property.

problem Understanding the properties of random covers of surfaces.
method Analyzing the fraction of degree nn covers of a surface with specific properties as nn increases.
result The fraction of degree nn covers of a surface with the Putman-Wieland property tends to 1 as nn approaches infinity.

The study finds new infinite dilogarithm identities related to number sequences and continued fractions.

problem Finding new infinite dilogarithm identities.
method Demonstrating families of identities associated with specific number sequences and continued fractions.
result New infinite dilogarithm identities related to Fibonacci, Lucas numbers, convergents of even period continued fractions, and recurrence relations.

New framework assesses regularization norms in ill-posed problems, revealing L2 instability and proposing adaptive fractional RKHS solutions.

problem Comparative analysis of regularization norms in ill-posed problems.
method Small noise analysis framework for Tikhonov and RKHS regularizations.
result Optimal convergence rates achieved with adaptive fractional RKHS, but hyper-parameters decay too fast.

Unified framework for lower bounds in interactive decision making.

problem Challenges in interactive decision making, especially bandits and reinforcement learning.
method Interactive Fano method and Fractional Covering Number.
result Unified characterization of learnability for stochastic bandit problems and tight lower bounds for interactive decision making.

We present a construction of complete self-dual Einstein metrics of negative scalar curvature on an uncountable family of manifolds of infinite topological type, which are enumerated by continued fraction expansions of irrational numbers. These manifolds may be regarded as limits of the resolutions of cyclic quotient s…

2005-08-30abs ↗pdf ↗

We study geodesics on the modular surface, comparing WP and hyperbolic metrics.

problem Comparing geodesics on the modular surface under different metrics.
method Lift WP geodesics to the universal cover, analyze geometric properties, and compare deviations.
result WP and hyperbolic geodesics fellow-travel in the thick part of the universal cover.

New method uses fractional posteriors for semiparametric inference with improved uncertainty quantification.

problem Semiparametric inference with nonparametric priors and fractional posteriors.
method Established a general Bernstein--von Mises theorem for fractional posterior distributions, proposed shifted-and-rescaled credible sets.
result Fractional posterior credible sets provide reliable uncertainty quantification but have inflated size; shifted-and-rescaled set is an efficient confidence set.

The study compares differencing methods for financial data and finds fractional differencing improves model performance.

problem Improving financial time series forecasting models using appropriate data transformation techniques.
method Comparative analysis of traditional logarithmic returns and fractional differencing methods, including tempered extensions.
result Fractional differencing methods improve model forecasting performance and trading strategy effectiveness.

Let XX be an asymptotically hyperbolic manifold and MM its conformal infinity. This paper is devoted to deduce several existence results of the fractional Yamabe problem on MM under various geometric assumptions on XX and MM: Firstly, we handle when the boundary MM has a point at which the mean curvature is negat…

2016-03-21abs ↗pdf ↗

We study T. Cover's rebalancing option (Ordentlich and Cover 1998) under discrete hindsight optimization in continuous time. The payoff in question is equal to the final wealth that would have accrued to a $\$1$ deposit into the best of some finite set of (perhaps levered) rebalancing rules determined in hindsight. A r…

2019-03-03abs ↗pdf ↗

This paper explores how rational numbers on the Stern-Brocot diagram map to lines when terms are extended.

problem Understanding the geometry of rational numbers on the Stern-Brocot diagram.
method Analyzing continued fraction expansions and their geometric implications on the diagram.
result Vertices of the Stern-Brocot diagram corresponding to extended rational numbers lie on two Euclidean lines.

This paper investigates integer multiplication of continued fractions using geometric structures. In particular, this paper shows that integer multiplication of a continued fraction can be represented by replacing one triangulation of an orbifold with another triangulation. This method is used to show that eventually p…

2018-09-25abs ↗pdf ↗

Given a graphical model, one essential problem is MAP inference, that is, finding the most likely configuration of states according to the model. Although this problem is NP-hard, large instances can be solved in practice. A major open question is to explain why this is true. We give a natural condition under which we …

2017-03-08abs ↗pdf ↗

The study provides a criterion for fractional-linear integrals of geodesics on surfaces.

problem Existence and classification of fractional-linear integrals for geodesic flows on Riemannian surfaces.
method Criterion and analysis of moduli space of local integrals.
result The moduli space of such local integrals is either the 2D projective plane or finite points.

We count orientable small covers over cubes. We also get estimates for On/RnO_n/R_n, where OnO_n is the number of orientable small covers and RnR_n is the number of all small covers over an nn-cube up to the Davis-Januszkiewicz equivalence.

2008-12-19abs ↗pdf ↗

We give a covering number bound for deep learning networks that is independent of the size of the network. The key for the simple analysis is that for linear classifiers, rotating the data doesn't affect the covering number. Thus, we can ignore the rotation part of each layer's linear transformation, and get the coveri…

2017-11-02abs ↗pdf ↗

This paper prices and replicates the financial derivative whose payoff at TT is the wealth that would have accrued to a $\$1$ deposit into the best continuously-rebalanced portfolio (or fixed-fraction betting scheme) determined in hindsight. For the single-stock Black-Scholes market, Ordentlich and Cover (1998) only p…

2018-10-05abs ↗pdf ↗

Modeling joint log-volatility dynamics with multivariate fractional Ornstein-Uhlenbeck process.

problem Empirical evidence of joint behavior in realized volatility time series.
method Multivariate fractional Ornstein-Uhlenbeck process with different Hurst exponents and non-trivial interdependencies.
result Model accurately captures asymmetries and spillover effects in realized-volatility time series.

Paper proves ratios of Chern numbers differ for complex hyperbolic branched covers.

problem Proving differences in Chern number ratios for complex hyperbolic branched covers.
method Analyzes Chern numbers of complex hyperbolic branched covers and compares them to those of complex hyperbolic manifolds.
result Ratio of Chern numbers for branched covers are not all equal to those of complex hyperbolic manifolds.

A partial order on prime knots can be defined by declaring JKJ\ge K if there exists an epimorphism from the knot group of JJ onto the knot group of KK. Suppose that JJ is a 2-bridge knot that is strictly greater than mm distinct, nontrivial knots. In this paper we determine a lower bound on the crossing number of $…

2018-10-11abs ↗pdf ↗

In the present paper we find a bijection between the set of small covers over an nn-cube and the set of acyclic digraphs with nn labeled nodes. Using this, we give a formula of the number of small covers over an nn-cube (generally, a product of simplices) up to Davis-Januszkiewicz equivalence classes and $\mathbf{Z}…

2008-02-14abs ↗pdf ↗

This paper studies both the conductance and charge transport on 2D orbifolds in a strong magnetic field. We consider a family of Landau Hamiltonians on a complex, compact 2D orbifold YY that are parametrised by the Jacobian torus J(Y)J(Y) of YY. We calculate the degree of the associated stable holomorphic spectral orbi…

2018-11-28abs ↗pdf ↗