An improved limit on the charge of antihydrogen from stochastic acceleration
暂无分享,去创建一个
A. Zhmoginov | J. Wurtele | A. Charman | J. Fajans | T. Momose | W. Hardy | S. Eriksson | M. Fujiwara | N. Madsen | D. P. Werf | M. Ahmadi | W. Bertsche | A. Capra | C. Carruth | C. L. Cesar | M. Charlton | N. Evetts | T. Friesen | D. Gill | J. Hangst | M. Hayden | C. A. Isaac | S. A. Jones | S. Jonsell | L. Kurchaninov | D. Maxwell | J. Mckenna | S. Menary | J. Munich | K. Olchanski | A. Olin | P. Pusa | C. Rasmussen | F. Robicheaux | R. Sacramento | M. Sameed | E. Sarid | D. M. Silveira | C. So | T. Tharp | R. Thompson | J. M. Michan | M. Baquero-Ruiz | E. Butler | A. Gutierrez | P. Nolan | A. Povilus | L. Evans | A. Ishida | J. McKenna | R. Thompson | A. Olin | L. Kurchaninov
[1] A. Capra. Testing CPT And Antigravity With Trapped Antihydrogen At ALPHA , 2015 .
[2] A. Zhmoginov,et al. An experimental limit on the charge of antihydrogen , 2014, Nature Communications.
[3] A. Zhmoginov,et al. Using stochastic acceleration to place experimental limits on the charge of antihydrogen , 2014, 1405.1954.
[4] P. W. Hess,et al. Order of Magnitude Smaller Limit on the Electric Dipole Moment of the Electron , 2013, Science.
[5] John W. V. Storey,et al. The ALPHA antihydrogen trapping apparatus , 2014 .
[6] A. Little,et al. Description and first application of a new technique to measure the gravitational mass of antihydrogen , 2013, Nature Communications.
[7] M. Fujiwara,et al. A proposal for laser cooling antihydrogen atoms , 2012, 1210.6103.
[8] M. Baquero-Ruiz. Studies on the Neutrality of Antihydrogen , 2013 .
[9] Robert I. Thompson,et al. Silicon vertex detector upgrade in the ALPHA experiment , 2013 .
[10] J. Wurtele,et al. Resonant quantum transitions in trapped antihydrogen atoms , 2012, Nature.
[11] J. Wurtele,et al. Discriminating between antihydrogen and mirror-trapped antiprotons in a minimum-B trap , 2012, 1201.3944.
[12] M C George,et al. Trapped Antihydrogen in Its Ground State , 2012 .
[13] J. Fajans,et al. Antihydrogen annihilation reconstruction with the ALPHA silicon detector , 2012 .
[14] D. Horvath,et al. Two-photon laser spectroscopy of antiprotonic helium and the antiproton-to-electron mass ratio , 2011, Nature.
[15] Berkeley,et al. Confinement of antihydrogen for 1,000 seconds , 2011, 1104.4982.
[16] G. Galeazzi,et al. Testing the neutrality of matter by acoustic means in a spherical resonator , 2011, 1102.2766.
[17] J. Wurtele,et al. Autoresonant excitation of antiproton plasmas. , 2011, Physical review letters.
[18] J. Wurtele,et al. Search For Trapped Antihydrogen , 2010, 1012.4110.
[19] J. Wurtele,et al. Trapped antihydrogen , 2010, Nature.
[20] I. Narsky,et al. Optimization of Signal Significance by Bagging Decision Trees , 2005, physics/0507157.
[21] I. Narsky. StatPatternRecognition: A C++ Package for Statistical Analysis of High Energy Physics Data , 2005, physics/0507143.
[22] J. Bowman,et al. On the Measurement of the Neutron Lifetime Using Ultracold Neutrons in a Vacuum Quadrupole Trap , 2005, Journal of Research of the National Institute of Standards and Technology.
[23] J. Fajans,et al. Autoresonant (nonstationary) excitation of pendulums, Plutinos, plasmas, and other nonlinear oscillators , 2001 .
[24] L. Wasserman,et al. The Selection of Prior Distributions by Formal Rules , 1996 .
[25] Hayes,et al. Review of Particle Physics. , 1996, Physical review. D, Particles and fields.
[26] A. Buzzo,et al. Production of antihydrogen , 1996 .
[27] Chu,et al. Measurement of the positronium 1 (3)S1-2 (3)S1 interval by continuous-wave two-photon excitation. , 1993, Physical review. A, Atomic, molecular, and optical physics.
[28] Murphy,et al. Positron trapping in an electrostatic well by inelastic collisions with nitrogen molecules. , 1992, Physical review. A, Atomic, molecular, and optical physics.
[29] Hughes,et al. Electric charges of positrons and antiprotons. , 1992, Physical review letters.
[30] C. C. Rodriguez. Objective Bayesianism and Geometry , 1990 .
[31] J. Berger. Statistical Decision Theory and Bayesian Analysis , 1988 .
[32] Chris Quigg,et al. Gauge Theories of the Strong, Weak, and Electromagnetic Interactions , 1983 .
[33] P. Kalmus,et al. Antimatter , 2017, Lawrence Booth’s Book of Visions.
[34] P. Sandars. The electric-dipole moments of an atom II. The contribution from an electric-dipole moment on the electron with particular reference to the hydrogen atom , 1968 .
[35] J. Jeans. Origin of Cosmic Radiation. , 1931, Nature.