L.S. Schroeder
Lawrence Berkeley National Laboratory
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Featured researches published by L.S. Schroeder.
Physical Review Letters | 2002
J. Klay; N. N. Ajitanand; J. Alexander; M. G. Anderson; D. Best; F.P. Brady; T. Case; W. Caskey; D. Cebra; J. L. Chance; P. Chung; Brian J. Cole; K. Crowe; A. C. Das; J. E. Draper; M. L. Gilkes; S. Gushue; M. Heffner; A. Hirsch; E. Hjort; L. Huo; M. Justice; M. Kaplan; D. Keane; J. C. Kintner; D. Krofcheck; R. Lacey; J. Lauret; C. Law; M. A. Lisa
Rapidity distributions of protons from central
Physical Review Letters | 2000
H. Liu; B. Srivastava; F.P. Brady; M. Justice; D. Cebra; S. Panitkin; E. Hjort; Z. Milosevich; Brian J. Cole; G. Rai; A. C. Das; J. Klay; J. L. Romero; R. P. Scharenberg; L. Huo; J. L. Chance; M. L. Gilkes; K. Crowe; M. Heffner; N.T.B. Stone; S. Wang; J. Whitfield; T. J. M. Symons; Y.M. Liu; S. Gushue; D. Best; J. E. Draper; A. Hirsch; M. Kaplan; W. Caskey
^{197}
Physical Review Letters | 1998
Maria C. Perillo Isaac; Y.D. Chan; R. M. Clark; Deleplanque; Michael Raymond Dragowsky; P. Fallon; R.-M. Larimer; I. Y. Lee; A. O. Macchiavelli; R. W. MacLeod; K. Nishiizumi; E. B. Norman; L.S. Schroeder; F. S. Stephens; I. D. Goldman
Au +
Physical Review Letters | 2001
P. Chung; B. Srivastava; M. L. Gilkes; F.P. Brady; J. L. Romero; M. Justice; D. Olson; S. Panitkin; Lisa; Z. Milosevich; Brian J. Cole; D. Cebra; A. C. Das; J. Klay; J. Lauret; L. Huo; L.S. Schroeder; E. Hjort; G. Rai; J. L. Chance; H. Liu; J. E. Draper; C. Pinkenburg; K. Crowe; M. Heffner; N. Porile; J. C. Kintner; T. J. M. Symons; Y.M. Liu; S. Gushue
^{197}
arXiv: Nuclear Experiment | 2001
S. Panitkin; N. N. Ajitanand; J. Alexander; M. Anderson; D. Best; F.P. Brady; T. Case; W. Caskey; D. Cebra; J. L. Chance; P. Chung; Brian J. Cole; K. Crowe; A. C. Das; J. E. Draper; M. L. Gilkes; S. Gushue; M. Heffner; A. Hirsch; E. Hjort; L. Huo; M. Justice; M. Kaplan; D. Keane; J. C. Kintner; J. Klay; D. Krofcheck; R. Lacey; Michael Annan Lisa; H. Liu
Au collisions measured by the E895 Collaboration in the energy range from 2 to 8 AGeV at the Brookhaven AGS are presented. Longitudinal flow parameters derived using a thermal model including collective longitudinal expansion are extracted from these distributions. The results show an approximately linear increase in the longitudinal flow velocity,
Physical Review Letters | 2001
P. Chung; N. N. Ajitanand; J. Alexander; M. Anderson; D. Best; F.P. Brady; T. Case; W. Caskey; D. Cebra; J. L. Chance; Brian J. Cole; K. Crowe; A. C. Das; J. E. Draper; M. L. Gilkes; S. Gushue; M. Heffner; A. Hirsch; E. Hjort; L. Huo; M. Justice; M. Kaplan; D. Keane; J. C. Kintner; J. Klay; D. Krofcheck; R. Lacey; J. Lauret; M. A. Lisa; H. Liu
<\beta\gamma>_{L}
Journal of Physics G | 2001
P. Chung; B. Srivastava; M. L. Gilkes; F.P. Brady; J. L. Romero; M. Justice; D. Olson; Lisa; Z. Milosevich; Brian J. Cole; D. Cebra; J. Klay; J. Lauret; L. Huo; L.S. Schroeder; E. Hjort; G. Rai; J. L. Chance; S.Yu. Panitkin; H. Liu; J. E. Draper; C. Pinkenburg; K. Crowe; M. Heffner; N. Porile; N.T.B. Stone; J. C. Kintner; C. Law; Y.M. Liu; S. Gushue
, as a function of the logarithm of beam energy.
Physical Review C | 1990
John William Harris; Miller J; H. G. Pugh; Renteln P; Roche G; L.S. Schroeder; Treuhaft Rn; P. Kirk; G. Krebs; Brockmann R; K. Wolf
Using the large acceptance Time Projection Chamber of experiment E895 at Brookhaven, measurements of collective sideward flow in Au+Au collisions at beam energies of 2A, 4A, 6A, and 8A GeV are presented in the form of in-plane transverse momentum and the first Fourier coefficient of azimuthal anisotropy v(1). These measurements indicate a smooth variation of sideward flow as a function of beam energy. The data are compared with four nuclear transport models which have an orientation towards this energy range. All four exhibit some qualitative trends similar to those found in the data, although none show a consistent pattern of agreement within experimental uncertainties.
Physical Review Letters | 1980
A. Sandoval; R. Stock; H Stelzer; R. Renfordt; John William Harris; J.P. Brannigan; J.V. Geaga; L.J. Rosenberg; L.S. Schroeder; K. Wolf
We present the results of an experimental search for stable strange matter using the heavy ion technique, based on properties of strangelets. We studied samples of a meteorite, terrestrial nickel ore, and lunar soil. Our search improved by 2 to 3 orders of magnitude the existing experimental limit on the strange matter content in normal matter and enabled probing the flux of low mass strangelets on the lunar surface for the first time.p {copyright} {ital 1998} {ital The American Physical Society}
Physical Review Letters | 1984
R. Brockmann; John William Harris; A. Sandoval; R. Stock; H. Stroebele; G. Odyniec; H. G. Pugh; L.S. Schroeder; R. Renfordt; D. Schall; D. Bangert; W. Rauch; K. Wolf
Directed flow measurements for