A doubly exponential upper bound on noisy EPR states for binary games
April 18, 2019 Β· Declared Dead Β· π arXiv.org
"No code URL or promise found in abstract"
Evidence collected by the PWNC Scanner
Authors
Penghui Yao
arXiv ID
1904.08832
Category
quant-ph: Quantum Computing
Cross-listed
cs.CC,
cs.DS
Citations
4
Venue
arXiv.org
Last Checked
5 months ago
Abstract
This paper initiates the study of a class of entangled games, mono-state games, denoted by $(G,Ο)$, where $G$ is a two-player one-round game and $Ο$ is a bipartite state independent of the game $G$. In the mono-state game $(G,Ο)$, the players are only allowed to share arbitrary copies of $Ο$. This paper provides a doubly exponential upper bound on the copies of $Ο$ for the players to approximate the value of the game to an arbitrarily small constant precision for any mono-state binary game $(G,Ο)$, if $Ο$ is a noisy EPR state, which is a two-qubit state with completely mixed states as marginals and maximal correlation less than $1$. In particular, it includes $(1-Ξ΅)|Ξ¨\rangle\langleΞ¨|+Ξ΅\frac{I_2}{2}\otimes\frac{I_2}{2}$, an EPR state with an arbitrary depolarizing noise $Ξ΅>0$.The structure of the proofs is built the recent framework about the decidability of the non-interactive simulation of joint distributions, which is completely different from all previous optimization-based approaches or "Tsirelson's problem"-based approaches. This paper develops a series of new techniques about the Fourier analysis on matrix spaces and proves a quantum invariance principle and a hypercontractive inequality of random operators. This novel approach provides a new angle to study the decidability of the complexity class MIP$^*$, a longstanding open problem in quantum complexity theory.
Community Contributions
Found the code? Know the venue? Think something is wrong? Let us know!
π Similar Papers
In the same crypt β Quantum Computing
R.I.P.
π»
Ghosted
R.I.P.
π»
Ghosted
Quantum machine learning: a classical perspective
R.I.P.
π»
Ghosted
Noise-Adaptive Compiler Mappings for Noisy Intermediate-Scale Quantum Computers
R.I.P.
π»
Ghosted
ProjectQ: An Open Source Software Framework for Quantum Computing
R.I.P.
π»
Ghosted
Quantum Recommendation Systems
R.I.P.
π»
Ghosted
Traffic flow optimization using a quantum annealer
Died the same way β π» Ghosted
R.I.P.
π»
Ghosted
Federated Learning: Strategies for Improving Communication Efficiency
R.I.P.
π»
Ghosted
In-Datacenter Performance Analysis of a Tensor Processing Unit
R.I.P.
π»
Ghosted
Deep Convolutional Neural Networks for Computer-Aided Detection: CNN Architectures, Dataset Characteristics and Transfer Learning
R.I.P.
π»
Ghosted