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2004

Journal Article

New limits on the drift of fundamental constants from laboratory measurements - art. no. 230802

Fischer, M, Kolachevsky, N, Zimmermann, M, Holzwarth, R, Udem, T, Hänsch, TW, Abgrall, M, Grünert, J, Maksimovic, , Bize, S, Marion, H, Dos Santos, FP, Lemonde, P, Santarelli, G, Laurent, P, Clairon, A, Salomon, C, Haas, M, Jentschura, UD and Keitel, CH (2004). New limits on the drift of fundamental constants from laboratory measurements - art. no. 230802. Physical Review Letters, 92 (23) 230802. doi: 10.1103/PhysRevLett.92.230802

New limits on the drift of fundamental constants from laboratory measurements - art. no. 230802

2004

Journal Article

Experiments in fundamental physics scheduled and in development for the ISS

Lämmerzahl, C, Ahlers, G, Ashby, N, Barmatz, M, Biermann, PL, Dittus, H, Dohm, , Duncan, R, Gibble, K, Lipa, J, Lockerbie, N, Mulders, N and Salomon, C (2004). Experiments in fundamental physics scheduled and in development for the ISS. General Relativity and Gravitation, 36 (3), 615-649. doi: 10.1023/B:GERG.0000010734.62571.b4

Experiments in fundamental physics scheduled and in development for the ISS

1999

Journal Article

Quantum projection noise in an atomic fountain: A high stability cesium frequency standard

Santarelli, C, Laurent, P, Lemonde, P, Clairon, A, Mann, AG, Chang, S, Luiten, AN and Salomon, C (1999). Quantum projection noise in an atomic fountain: A high stability cesium frequency standard. Physical Review Letters, 82 (23), 4619-4622. doi: 10.1103/PhysRevLett.82.4619

Quantum projection noise in an atomic fountain: A high stability cesium frequency standard

1992

Journal Article

MEASUREMENT OF THE FRICTION COEFFICIENT IN 1D CORKSCREW OPTICAL MOLASSES BY STIMULATED RAYLEIGH SPECTROSCOPY

LOUNIS, B, COURTOIS, JY, VERKERK, P, SALOMON, C and GRYNBERG, G (1992). MEASUREMENT OF THE FRICTION COEFFICIENT IN 1D CORKSCREW OPTICAL MOLASSES BY STIMULATED RAYLEIGH SPECTROSCOPY. Physical Review Letters, 69 (21), 3029-3032. doi: 10.1103/PhysRevLett.69.3029

MEASUREMENT OF THE FRICTION COEFFICIENT IN 1D CORKSCREW OPTICAL MOLASSES BY STIMULATED RAYLEIGH SPECTROSCOPY