[This item is a preserved copy. To view the original, visit http://econtheory.org/] We study a game of strategic experimentation with two-armed bandits where the risky arm distributes lump-sum payoffs according to a Poisson process. Its intensity is either high or low, and unknown to the players. We consider Markov perfect equilibria with beliefs as the state variable and show that all such equilibria exhibit an 'encouragement effect' relative to the single-agent optimum. There is no equilibrium in which all players use cut-off strategies. Owing to the encouragement effect, asymmetric equilibria in which players take turns playing the risky arm before all experimentation stops Pareto dominate the unique symmetric equilibrium. Rewa...
We consider two players facing identical discrete-time bandit problems with a safe and a risky arm. ...
We study a class of symmetric strategic experimentation games. Each of two players faces an (exponen...
We analyze a two-player game of strategic experimentation with two-armed bandits. Each player has to...
[This item is a preserved copy. To view the original, visit http://econtheory.org/] We stu...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
This paper studies a game of strategic experimentation with two-armed bandits whose risky arm might ...
This paper studies a game of strategic experimentation with two-armed bandits whose risky arm might ...
We examine a two-player game with two-armed exponential bandits à la (Keller et al. in Econometrica ...
This paper studies a game of strategic experimentation with two-armed bandits whose risky arm might ...
We consider two players facing identical discrete-time bandit problems with a safe and a risky arm. ...
We consider two players facing identical discrete-time bandit problems with a safe and a risky arm. ...
We study a class of symmetric strategic experimentation games. Each of two players faces an (exponen...
We analyze a two-player game of strategic experimentation with two-armed bandits. Each player has to...
[This item is a preserved copy. To view the original, visit http://econtheory.org/] We stu...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
We study a game of strategic experimentation with two-armed bandits where the risky arm distributes ...
This paper studies a game of strategic experimentation with two-armed bandits whose risky arm might ...
This paper studies a game of strategic experimentation with two-armed bandits whose risky arm might ...
We examine a two-player game with two-armed exponential bandits à la (Keller et al. in Econometrica ...
This paper studies a game of strategic experimentation with two-armed bandits whose risky arm might ...
We consider two players facing identical discrete-time bandit problems with a safe and a risky arm. ...
We consider two players facing identical discrete-time bandit problems with a safe and a risky arm. ...
We study a class of symmetric strategic experimentation games. Each of two players faces an (exponen...
We analyze a two-player game of strategic experimentation with two-armed bandits. Each player has to...