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Neeraj Kayal
Person information
- affiliation: Microsoft Research, Bangalore, India
- award (2006): Gödel Prize
- award (2006): Fulkerson Prize
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2020 – today
- 2024
- [c31]Pritam Chandra, Ankit Garg, Neeraj Kayal, Kunal Mittal, Tanmay Sinha:
Learning Arithmetic Formulas in the Presence of Noise: A General Framework and Applications to Unsupervised Learning. ITCS 2024: 25:1-25:19 - 2023
- [c30]Prashanth Amireddy, Ankit Garg, Neeraj Kayal, Chandan Saha, Bhargav Thankey:
Low-Depth Arithmetic Circuit Lower Bounds: Bypassing Set-Multilinearization. ICALP 2023: 12:1-12:20 - [i33]Pritam Chandra, Ankit Garg, Neeraj Kayal, Kunal Mittal, Tanmay Sinha:
Learning Arithmetic Formulas in the Presence of Noise: A General Framework and Applications to Unsupervised Learning. CoRR abs/2311.07284 (2023) - [i32]Pritam Chandra, Ankit Garg, Neeraj Kayal, Kunal Mittal, Tanmay Sinha:
Learning Arithmetic Formulas in the Presence of Noise: A General Framework and Applications to Unsupervised Learning. Electron. Colloquium Comput. Complex. TR23 (2023) - 2022
- [c29]Vishwas Bhargava, Ankit Garg, Neeraj Kayal, Chandan Saha:
Learning Generalized Depth Three Arithmetic Circuits in the Non-Degenerate Case. APPROX/RANDOM 2022: 21:1-21:22 - [i31]Prashanth Amireddy, Ankit Garg, Neeraj Kayal, Chandan Saha, Bhargav Thankey:
Low-depth arithmetic circuit lower bounds via shifted partials. CoRR abs/2211.07691 (2022) - [i30]Prashanth Amireddy, Ankit Garg, Neeraj Kayal, Chandan Saha, Bhargav Thankey:
Low-depth arithmetic circuit lower bounds via shifted partials. Electron. Colloquium Comput. Complex. TR22 (2022) - 2021
- [i29]Vishwas Bhargava, Ankit Garg, Neeraj Kayal, Chandan Saha:
Learning generalized depth-three arithmetic circuits in the non-degenerate case. Electron. Colloquium Comput. Complex. TR21 (2021) - 2020
- [j16]Neeraj Kayal, Vineet Nair, Chandan Saha:
Separation Between Read-once Oblivious Algebraic Branching Programs (ROABPs) and Multilinear Depth-three Circuits. ACM Trans. Comput. Theory 12(1): 2:1-2:27 (2020) - [c28]Ankit Garg, Neeraj Kayal, Chandan Saha:
Learning sums of powers of low-degree polynomials in the non-degenerate case. FOCS 2020: 889-899 - [i28]Ankit Garg, Neeraj Kayal, Chandan Saha:
Learning sums of powers of low-degree polynomials in the non-degenerate case. CoRR abs/2004.06898 (2020) - [i27]Ankit Garg, Neeraj Kayal, Chandan Saha:
Learning sums of powers of low-degree polynomials in the non-degenerate case. Electron. Colloquium Comput. Complex. TR20 (2020)
2010 – 2019
- 2019
- [j15]Neeraj Kayal, Vineet Nair, Chandan Saha:
Average-case linear matrix factorization and reconstruction of low width algebraic branching programs. Comput. Complex. 28(4): 749-828 (2019) - [j14]Neeraj Kayal, Vineet Nair, Chandan Saha, Sébastien Tavenas:
Reconstruction of Full Rank Algebraic Branching Programs. ACM Trans. Comput. Theory 11(1): 2:1-2:56 (2019) - [c27]Ankit Garg, Nikhil Gupta, Neeraj Kayal, Chandan Saha:
Determinant Equivalence Test over Finite Fields and over Q. ICALP 2019: 62:1-62:15 - [c26]Neeraj Kayal, Chandan Saha:
Reconstruction of non-degenerate homogeneous depth three circuits. STOC 2019: 413-424 - [i26]Ankit Garg, Nikhil Gupta, Neeraj Kayal, Chandan Saha:
Determinant equivalence test over finite fields and over ℚ. Electron. Colloquium Comput. Complex. TR19 (2019) - 2018
- [j13]Neeraj Kayal, Chandan Saha:
Guest Column: A Paradigm for Arithmetic Circuit Lower Bounds. SIGACT News 49(1): 55-65 (2018) - [j12]Neeraj Kayal, Chandan Saha, Sébastien Tavenas:
On the Size of Homogeneous and of Depth-Four Formulas with Low Individual Degree. Theory Comput. 14(1): 1-46 (2018) - [i25]Neeraj Kayal, Vineet Nair, Chandan Saha:
Average-case linear matrix factorization and reconstruction of low width Algebraic Branching Programs. Electron. Colloquium Comput. Complex. TR18 (2018) - [i24]Neeraj Kayal, Chandan Saha:
Reconstruction of non-degenerate homogeneous depth three circuits. Electron. Colloquium Comput. Complex. TR18 (2018) - 2017
- [j11]Ankit Gupta, Pritish Kamath, Neeraj Kayal, Ramprasad Saptharishi:
Unexpected power of low-depth arithmetic circuits. Commun. ACM 60(6): 93-100 (2017) - [j10]Neeraj Kayal, Chandan Saha:
Multi-k-ic Depth Three Circuit Lower Bound. Theory Comput. Syst. 61(4): 1237-1251 (2017) - [j9]Neeraj Kayal, Nutan Limaye, Chandan Saha, Srikanth Srinivasan:
An Exponential Lower Bound for Homogeneous Depth Four Arithmetic Formulas. SIAM J. Comput. 46(1): 307-335 (2017) - [c25]Neeraj Kayal, Vineet Nair, Chandan Saha, Sébastien Tavenas:
Reconstruction of Full Rank Algebraic Branching Programs. CCC 2017: 21:1-21:61 - [i23]Neeraj Kayal, Vineet Nair, Chandan Saha, Sébastien Tavenas:
Reconstruction of full rank Algebraic Branching Programs. Electron. Colloquium Comput. Complex. TR17 (2017) - 2016
- [j8]Neeraj Kayal, Chandan Saha:
Lower Bounds for Depth-Three Arithmetic Circuits with small bottom fanin. Comput. Complex. 25(2): 419-454 (2016) - [j7]Ankit Gupta, Pritish Kamath, Neeraj Kayal, Ramprasad Saptharishi:
Arithmetic Circuits: A Chasm at Depth 3. SIAM J. Comput. 45(3): 1064-1079 (2016) - [c24]Neeraj Kayal, Chandan Saha, Sébastien Tavenas:
An Almost Cubic Lower Bound for Depth Three Arithmetic Circuits. ICALP 2016: 33:1-33:15 - [c23]Neeraj Kayal, Vineet Nair, Chandan Saha:
Separation Between Read-once Oblivious Algebraic Branching Programs (ROABPs) and Multilinear Depth Three Circuits. STACS 2016: 46:1-46:15 - [c22]Neeraj Kayal, Chandan Saha, Sébastien Tavenas:
On the size of homogeneous and of depth four formulas with low individual degree. STOC 2016: 626-632 - [i22]Neeraj Kayal, Chandan Saha, Sébastien Tavenas:
An almost Cubic Lower Bound for Depth Three Arithmetic Circuits. Electron. Colloquium Comput. Complex. TR16 (2016) - 2015
- [c21]Neeraj Kayal, Chandan Saha:
Lower Bounds for Depth Three Arithmetic Circuits with Small Bottom Fanin. CCC 2015: 158-208 - [c20]Neeraj Kayal, Pascal Koiran, Timothée Pecatte, Chandan Saha:
Lower Bounds for Sums of Powers of Low Degree Univariates. ICALP (1) 2015: 810-821 - [c19]Neeraj Kayal, Chandan Saha:
Multi-k-ic Depth Three Circuit Lower Bound. STACS 2015: 527-539 - [i21]Neeraj Kayal, Vineet Nair, Chandan Saha:
Separation between Read-once Oblivious Algebraic Branching Programs (ROABPs) and Multilinear Depth Three Circuits. Electron. Colloquium Comput. Complex. TR15 (2015) - [i20]Neeraj Kayal, Chandan Saha:
Multi-k-ic depth three circuit lower bound. Electron. Colloquium Comput. Complex. TR15 (2015) - [i19]Neeraj Kayal, Chandan Saha:
Lower Bounds for Sums of Products of Low arity Polynomials. Electron. Colloquium Comput. Complex. TR15 (2015) - [i18]Neeraj Kayal, Chandan Saha, Sébastien Tavenas:
On the size of homogeneous and of depth four formulas with low individual degree. Electron. Colloquium Comput. Complex. TR15 (2015) - 2014
- [j6]Ankit Gupta, Neeraj Kayal, Youming Qiao:
Random arithmetic formulas can be reconstructed efficiently. Comput. Complex. 23(2): 207-303 (2014) - [j5]Ankit Gupta, Pritish Kamath, Neeraj Kayal, Ramprasad Saptharishi:
Approaching the Chasm at Depth Four. J. ACM 61(6): 33:1-33:16 (2014) - [c18]Neeraj Kayal, Nutan Limaye, Chandan Saha, Srikanth Srinivasan:
An Exponential Lower Bound for Homogeneous Depth Four Arithmetic Formulas. FOCS 2014: 61-70 - [c17]Neeraj Kayal:
Arithmetic Circuit Complexity (Tutorial). STACS 2014: 28-28 - [c16]Neeraj Kayal, Nutan Limaye, Chandan Saha, Srikanth Srinivasan:
Super-polynomial lower bounds for depth-4 homogeneous arithmetic formulas. STOC 2014: 119-127 - [c15]Neeraj Kayal, Chandan Saha, Ramprasad Saptharishi:
A super-polynomial lower bound for regular arithmetic formulas. STOC 2014: 146-153 - [i17]Neeraj Kayal, Nutan Limaye, Chandan Saha, Srikanth Srinivasan:
An Exponential Lower Bound for Homogeneous Depth Four Arithmetic Formulas. Electron. Colloquium Comput. Complex. TR14 (2014) - [i16]Neeraj Kayal, Chandan Saha:
Lower Bounds for Depth Three Arithmetic Circuits with small bottom fanin. Electron. Colloquium Comput. Complex. TR14 (2014) - 2013
- [c14]Ankit Gupta, Neeraj Kayal, Youming Qiao:
Random Arithmetic Formulas Can Be Reconstructed Efficiently. CCC 2013: 1-9 - [c13]Ankit Gupta, Pritish Kamath, Neeraj Kayal, Ramprasad Saptharishi:
Approaching the Chasm at Depth Four. CCC 2013: 65-73 - [c12]Ankit Gupta, Pritish Kamath, Neeraj Kayal, Ramprasad Saptharishi:
Arithmetic Circuits: A Chasm at Depth Three. FOCS 2013: 578-587 - [i15]Ankit Gupta, Pritish Kamath, Neeraj Kayal, Ramprasad Saptharishi:
Arithmetic circuits: A chasm at depth three. Electron. Colloquium Comput. Complex. TR13 (2013) - [i14]Neeraj Kayal, Chandan Saha, Ramprasad Saptharishi:
A super-polynomial lower bound for regular arithmetic formulas. Electron. Colloquium Comput. Complex. TR13 (2013) - 2012
- [j4]Neeraj Kayal, Chandan Saha:
On the Sum of Square Roots of Polynomials and Related Problems. ACM Trans. Comput. Theory 4(4): 9:1-9:15 (2012) - [c11]Ankit Gupta, Neeraj Kayal, Satyanarayana V. Lokam:
Reconstruction of depth-4 multilinear circuits with top fan-in 2. STOC 2012: 625-642 - [c10]Neeraj Kayal:
Affine projections of polynomials: extended abstract. STOC 2012: 643-662 - [i13]Ankit Gupta, Pritish Kamath, Neeraj Kayal, Ramprasad Saptharishi:
An exponential lower bound for homogeneous depth four arithmetic circuits with bounded bottom fanin. Electron. Colloquium Comput. Complex. TR12 (2012) - [i12]Ankit Gupta, Neeraj Kayal, Youming Qiao:
Random Arithmetic Formulas can be Reconstructed Efficiently. Electron. Colloquium Comput. Complex. TR12 (2012) - [i11]Neeraj Kayal:
An exponential lower bound for the sum of powers of bounded degree polynomials. Electron. Colloquium Comput. Complex. TR12 (2012) - 2011
- [j3]Xi Chen, Neeraj Kayal, Avi Wigderson:
Partial Derivatives in Arithmetic Complexity and Beyond. Found. Trends Theor. Comput. Sci. 6(1-2): 1-138 (2011) - [c9]Neeraj Kayal, Chandan Saha:
On the Sum of Square Roots of Polynomials and Related Problems. CCC 2011: 292-299 - [c8]Ankit Gupta, Neeraj Kayal, Satyanarayana V. Lokam:
Efficient Reconstruction of Random Multilinear Formulas. FOCS 2011: 778-787 - [c7]Neeraj Kayal:
Efficient algorithms for some special cases of the polynomial equivalence problem. SODA 2011: 1409-1421 - [i10]Michael Forbes, Neeraj Kayal, Rajat Mittal, Chandan Saha:
Square root Bound on the Least Power Non-residue using a Sylvester-Vandermonde Determinant. CoRR abs/1104.4557 (2011) - [i9]Ankit Gupta, Neeraj Kayal, Satyanarayana V. Lokam:
Reconstruction of Depth-4 Multilinear Circuits with Top fanin 2. Electron. Colloquium Comput. Complex. TR11 (2011) - [i8]Neeraj Kayal:
Affine projections of polynomials. Electron. Colloquium Comput. Complex. TR11 (2011) - 2010
- [i7]Neeraj Kayal:
Algorithms for Arithmetic Circuits. Electron. Colloquium Comput. Complex. TR10 (2010) - [i6]Neeraj Kayal, Chandan Saha:
On the Sum of Square Roots of Polynomials and related problems. Electron. Colloquium Comput. Complex. TR10 (2010)
2000 – 2009
- 2009
- [c6]Neeraj Kayal:
The Complexity of the Annihilating Polynomial. CCC 2009: 184-193 - [c5]Neeraj Kayal, Shubhangi Saraf:
Blackbox Polynomial Identity Testing for Depth 3 Circuits. FOCS 2009: 198-207 - [c4]Neeraj Kayal, Timur Nezhmetdinov:
Factoring Groups Efficiently. ICALP (1) 2009: 585-596 - [i5]Neeraj Kayal, Shubhangi Saraf:
Blackbox Polynomial Identity Testing for Depth 3 Circuits. Electron. Colloquium Comput. Complex. TR09 (2009) - 2008
- [i4]Neeraj Kayal, Timur Nezhmetdinov:
Factoring groups efficiently. Electron. Colloquium Comput. Complex. TR08 (2008) - 2007
- [j2]Neeraj Kayal, Nitin Saxena:
Polynomial Identity Testing for Depth 3 Circuits. Comput. Complex. 16(2): 115-138 (2007) - 2006
- [j1]Neeraj Kayal, Nitin Saxena:
Complexity of Ring Morphism Problems. Comput. Complex. 15(4): 342-390 (2006) - [c3]Neeraj Kayal, Nitin Saxena:
Polynomial Identity Testing for Depth 3 Circuits. CCC 2006: 9-17 - 2005
- [c2]Neeraj Kayal, Nitin Saxena:
On the Ring Isomorphism and Automorphism Problems. CCC 2005: 2-12 - [c1]Neeraj Kayal:
Solvability of a System of Bivariate Polynomial Equations over a Finite Field. ICALP 2005: 551-562 - [i3]Neeraj Kayal:
Recognizing permutation functions in polynomial time. Electron. Colloquium Comput. Complex. TR05 (2005) - [i2]Neeraj Kayal, Nitin Saxena:
Polynomial Identity Testing for Depth 3 Circuits. Electron. Colloquium Comput. Complex. TR05 (2005) - 2004
- [i1]Neeraj Kayal, Nitin Saxena:
On the Ring Isomorphism & Automorphism Problems. Electron. Colloquium Comput. Complex. TR04 (2004)
Coauthor Index
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