A non-linear version of Bourgain's projection theorem

被引:9
作者
Shmerkin, Pablo [1 ]
机构
[1] Univ British Columbia, Dept Math, Vancouver, BC, Canada
基金
欧洲研究理事会;
关键词
Projection theorems; distance sets; pinned distance sets; incidences; Hausdorff dimension; patterns; Lipschitz functions; HAUSDORFF DIMENSION; SETS;
D O I
10.4171/JEMS/1283
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
We prove a version of Bourgain's projection theorem for parametrized families of C2 maps, which refines the original statement even in the linear case by requiring non-concentration only at a single natural scale. As one application, we show that if A is a Borel set of Hausdorff dimension close to 1 in R2 or close to 3/2 in R3, then for y E A outside of a very sparse set, the pinned distance set {lx - yl : x E A} has Hausdorff dimension at least 1/2 + c, where c is universal. Furthermore, the same holds if the distances are taken with respect to a C2 norm of positive Gaussian curvature. As further applications, we obtain new bounds on the dimensions of spherical projections, and an improvement over the trivial estimate for incidences between 8-balls and 8-neighborhoods of curves in the plane, under fairly general assumptions. The proofs depend on a new multiscale decomposition of measures into "Frostman pieces" that may be of independent interest.
引用
收藏
页码:4155 / 4204
页数:50
相关论文
共 50 条
[41]   Differences in Nutrient Requirements Imply a Non-Linear Emergence of Leaders in Animal Groups [J].
Sueur, Cedric ;
Deneubourg, Jean-Louis ;
Petit, Odile ;
Couzin, Iain D. .
PLOS COMPUTATIONAL BIOLOGY, 2010, 6 (09)
[42]   Population Dynamics and Agglomeration Factors: A Non-Linear Threshold Estimation of Density Effects [J].
Ciommi, Mariateresa ;
Egidi, Gianluca ;
Salvia, Rosanna ;
Cividino, Sirio ;
Rontos, Kostas ;
Salvati, Luca .
SUSTAINABILITY, 2020, 12 (06)
[43]   A NON-LINEAR KINETIC MODEL OF SELF-PROPELLED PARTICLES WITH MULTIPLE EQUILIBRIA [J].
Butta, Paolo ;
Flandoli, Franco ;
Ottobre, Michela ;
Zegarlinski, Boguslaw .
KINETIC AND RELATED MODELS, 2019, 12 (04) :791-827
[44]   Weak non-linear influences of biotic and abiotic factors on invasive macrophyte occurrence [J].
Fleming, Jonathan P. ;
Wersal, Ryan M. ;
Madsen, John D. ;
Dibble, Eric D. .
AQUATIC INVASIONS, 2021, 16 (02) :349-364
[45]   Reducing solar effect on the glazing material based on using non-linear patterns [J].
Lin, Shiang-Jiun ;
Li, Hao-Hu .
ENERGY AND BUILDINGS, 2015, 109 :369-376
[46]   Non-Linear Analysis of River System Dynamics Using Recurrence Quantification Analysis [J].
Fragkou, Athanasios ;
Charakopoulos, Avraam ;
Karakasidis, Theodoros ;
Liakopoulos, Antonios .
APPLIEDMATH, 2022, 2 (01) :1-15
[47]   Let's do the time warp again: non-linear time series matching as a tool for sequentially structured data in ecology [J].
Hegg, Jens C. ;
Kennedy, Brian P. .
ECOSPHERE, 2021, 12 (09)
[48]   Piecewise-linear approximation of non-linear models based on probabilistically/possibilistically interpreted intervals' numbers (INs) [J].
Papadakis, S. E. ;
Kaburlasos, Vassilis G. .
INFORMATION SCIENCES, 2010, 180 (24) :5060-5076
[49]   Visualizing the spatial gene expression organization in the brain through non-linear similarity embeddings [J].
Mahfouz, Ahmed ;
van de Giessen, Martijn ;
van der Maaten, Laurens ;
Huisman, Sjoerd ;
Reinders, Marcel ;
Hawrylycz, Michael J. ;
Lelieveldt, Boudewijn P. F. .
METHODS, 2015, 73 :79-89
[50]   Fault detection in non-linear systems based on type-2 fuzzy logic [J].
Safarinejadian, Behrooz ;
Ghane, Parisa ;
Monirvaghefi, Hossein .
INTERNATIONAL JOURNAL OF SYSTEMS SCIENCE, 2015, 46 (03) :394-404