All Stories

  1. Enhancing Ring Laser Gyroscope data analysis through Neural Networks for Earthquake detection and Phenomenon identification
  2. Noise Level of a Ring Laser Gyroscope in the Femto-Rad/s Range
  3. Possible Tests of Fundamental Physics with GINGER
  4. GINGER
  5. GINGER will listen to the beat of the Earth
  6. High sensitivity tool for geophysical applications: a geometrically locked ring laser gyroscope
  7. Overcoming 1 part in $$10^9$$ of earth angular rotation rate measurement with the G Wettzell data
  8. Radial distribution gain at 633  nm in a He–Ne RF-excited small bore discharge
  9. Effects of temperature variations in high-sensitivity Sagnac gyroscope
  10. Erratum to: Constraining theories of gravity by GINGER experiment
  11. Erratum to: Sensitivity limit investigation of a Sagnac gyroscope through linear regression analysis
  12. Sensitivity limit investigation of a Sagnac gyroscope through linear regression analysis
  13. Constraining theories of gravity by GINGER experiment
  14. Underground Sagnac gyroscope with sub-prad/s rotation rate sensitivity: Toward general relativity tests on Earth
  15. Length measurement and stabilization of the diagonals of a square area laser gyroscope
  16. Identification and correction of Sagnac frequency variations: an implementation for the GINGERINO data analysis
  17. Sagnac gyroscopes, GINGERINO, and GINGER
  18. Small scale ring laser gyroscopes as environmental monitors
  19. GINGER and GINGERINO
  20. Analysis of ring laser gyroscopes including laser dynamics
  21. Ring laser gyroscopes in the underground Gran Sasso Laboratories
  22. Analysis of 90 day operation of the GINGERINO gyroscope: publisher’s note
  23. GINGER - Toward an experimental test of General Relativity
  24. G-LAS: a ring laser gyroscope for high accuracy angle measurements
  25. Analysis of 90 day operation of the GINGERINO gyroscope
  26. Rotational motions from the 2016, Central Italy seismic sequence, as observed by an underground ring laser gyroscope
  27. Long term stabilization of large frame laser gyroscopes
  28. GINGER: An array of ring lasers for testing fundamental physics
  29. The GINGER Project
  30. G-LAS a ring laser goniometer for angular metrology
  31. Intrinsic limits on resolutions in muon- and electron-neutrino charged-current events in the KM3NeT/ORCA detector
  32. GINGER: A feasibility study
  33. Inertial bioluminescence rhythms at the Capo Passero (KM3NeT-Italia) site, Central Mediterranean Sea
  34. Deep underground rotation measurements: GINGERino ring laser gyroscope in Gran Sasso
  35. Testing general relativity by means of ring lasers
  36. A method to stabilise the performance of negatively fed KM3NeT photomultipliers
  37. A network of heterodyne laser interferometers for monitoring and control of large ring-lasers
  38. Letter of intent for KM3NeT 2.0
  39. External metrology system for the stabilization of large ring-lasers
  40. High-Accuracy Ring Laser Gyroscopes: Earth Rotation Rate and Relativistic Effects
  41. The GINGER project and status of the GINGERino prototype at LNGS
  42. First deep underground observation of rotational signals from an earthquake at teleseismic distance using a large ring laser gyroscope
  43. Planar angle metrology: G-LAS, the INRIM - INFN ring laser goniometer
  44. Very high sensitivity laser gyroscopes for general relativity tests in a ground laboratory
  45. Long term monitoring of the optical background in the Capo Passero deep-sea site with the NEMO tower prototype
  46. The prototype detection unit of the KM3NeT detector
  47. Measurement of the atmospheric muon flux at 3500 m depth with the NEMO Phase-2 detector
  48. Measurement of the atmospheric muon depth intensity relation with the NEMO Phase-2 tower
  49. Optical fibre hydrophones for navigation systems
  50. Geometrical scale-factor stabilization of square cavity ring laser gyroscopes
  51. Optimization of the geometrical stability in square ring laser gyroscopes
  52. Strain sensors based on fiber Bragg gratings for volcano monitoring
  53. The INRIM - INFN Ring Laser Gyroscope for Planar Angle Metrology Application
  54. A ring lasers array for fundamental physics
  55. Interferometric length metrology for the dimensional control of ultra-stable ring laser gyroscopes
  56. Deep sea tests of a prototype of the KM3NeT digital optical module
  57. Carrier-envelope offset frequency noise analysis in Ti:sapphire frequency combs
  58. Experimental activity toward GINGER (gyroscopes IN general relativity)
  59. Ring laser gyroscope for accurate angle metrology
  60. Measuring general relativity effects in a terrestrial lab by means of laser gyroscopes
  61. Toward the “perfect square” ring laser gyroscope
  62. Status and first results of the NEMO Phase-2 tower
  63. Controlling the non-linear intracavity dynamics of large He–Ne laser gyroscopes
  64. Light and/or atomic beams to detect ultraweak gravitational effects
  65. Long-term optical background measurements in the Capo Passero deep-sea site
  66. The trigger and data acquisition for the NEMO-Phase 2 tower
  67. Underwater acoustic positioning system for the SMO and KM3NeT - Italia projects
  68. Erratum: The optical modules of the phase-2 of the NEMO project
  69. The optical modules of the phase-2 of the NEMO project
  70. Laser dynamics effects on the systematics of large size laser gyroscopes
  71. Absolute control of the scale factor in GP2 laser gyroscope: Toward a ground based detector of the lense-thirring effect
  72. Frequency noise performances of a Ti:sapphire optical frequency comb stabilized to an optical reference
  73. Compensation of the laser parameter fluctuations in large ring-laser gyros: a Kalman filter approach
  74. A laser gyroscope system to detect the gravito-magnetic effect on Earth
  75. Laser gyroscopes for very high sensitive applications
  76. Performance of “G-Pisa” ring laser gyro at the Virgo site
  77. Horizontal rotation signals detected by “G-Pisa” ring laser for the M w = 9.0, March 2011, Japan earthquake
  78. Measuring gravitomagnetic effects by a multi-ring-laser gyroscope
  79. A 1.82 m2 ring laser gyroscope for nano-rotational motion sensing
  80. The NEMO project: A status report
  81. A LASER GYROSCOPE SYSTEM TO DETECT THE GRAVITO-MAGNETIC EFFECT ON EARTH
  82. Fiber laser hydrophone for underwater acoustic surveillance and marine mammals monitoring
  83. High sensitivity rotation measurements with a mid-size laser gyroscope
  84. Absolute frequency measurement of unstable lasers with optical frequency combs
  85. Measurement of the atmospheric muon flux with the NEMO Phase-1 detector
  86. Performances of ‘G-Pisa’: a middle size gyrolaser
  87. Rotational sensitivity of the G-Pisa gyrolaser
  88. Procedures and results of the measurements on large area photomultipliers for the NEMO project
  89. Thermal control of a dual mode parametric sapphire transducer
  90. Sub-Doppler spectroscopy of atoms excited in the regime of Rabi oscillations in a thin gas cell
  91. Optical lattice clock on bosonic Strontium atoms
  92. Long-term measurements of acoustic background noise in very deep sea
  93. A proposal for optical high-accuracy atomic references using thin cell spectroscopy
  94. Thermal control of a dual mode parametric sapphire transducer
  95. G-Pisa gyrolaser
  96. Recent results and perspectives of the NEMO project
  97. Recent achievements of the NEMO project
  98. The Data Acquisition and Transport Design for NEMO Phase 1
  99. Timing calibration for the NEMO (NEutrino Mediterranean Observatory) prototype
  100. Fiber laser strain sensor device
  101. Sensitivity of an underwater Čerenkov km3 telescope to TeV neutrinos from Galactic microquasars
  102. NEMO: A PROJECT FOR A KM 3 UNDERWATER DETECTOR FOR ASTROPHYSICAL NEUTRINOS IN THE MEDITERRANEAN SEA
  103. Frequency Characterization of a Terahertz Quantum-Cascade Laser
  104. Fiber laser hydrophone as possible detector of UHE neutrinos
  105. Deep seawater inherent optical properties in the Southern Ionian Sea
  106. Erbium-doped fiber lasers as deep-sea hydrophones
  107. Status of NEMO
  108. FIBER LASER HYDROPHONES AS PRESSURE SENSORS
  109. Development of an erbium-doped fibre laser as a deep-sea hydrophone
  110. Measurements of Near-Infrared Frequency Mixing by Metal–Semiconductor Point-Contact Diodes
  111. Coherent multiwave heterodyne frequency measurement of a far-infared laser by means of a femtosecond laser comb
  112. Solid-state power supply for gas lasers
  113. An analog+digital phase-frequency detector for phase locking of a diode laser to an optical frequency comb
  114. Phase locking of a diode laser to a Ti:Sa comb by means of an analog+digital phase-frequency detector
  115. Heterodyne measurements in FIR range with a femtosecond laser used as a reference oscillator
  116. Geometric anti-spring vertical accelerometers for seismic monitoring
  117. Metal-semiconductor point-contact diodes for frequency mixing in the near infrared
  118. New far-infrared emissions and frequency measurements in hydrazine
  119. High-stability 72-GHz gunn oscillator for the characterization of ultra-high-speed optical receivers based on Inp and InSb schottky diodes
  120. Measurementof the $ \mathsf {4s^{2} {^{1}S_{0}} \to 4s3d {^{1}D_{2}}}$ transition probability in calcium
  121. Frequency stabilization of a diode laser on the Cs D2 resonance line by the Zeeman effect in a vapor cell
  122. g _J Factor of neutral calcium ^3P metastable levels
  123. metastable level density and temperature measurement in a low-density argon plasma
  124. Time-resolved plasma diagnostic by laser-diode spectroscopy
  125. Xenon saturation spectroscopy by diode laser
  126. Near-UV sub-Doppler spectroscopy on a metastable Mg beam by a frequency-doubled diode laser
  127. Optical pumping of metastable magnesium in an atomic beam
  128. Wavelength, isotopic shift, and transition rate of the MgI resonance line
  129. Resistance of Si:P samples in the temperature range 0.4–5.0 K
  130. Measurement of the calcium ^1P_1−^1D_2 transition rate in a laser-cooled atomic beam
  131. Evidence for laser cooling in a magnesium atomic beam
  132. Deceleration and capture of the antiprotons
  133. Stochastic cooling in multiring traps
  134. Possible measurements of the gravitational acceleration with neutral antimatter
  135. Investigation of collisional lineshapes of neon transitions in noble gases' mixtures
  136. Stochastic cooling in Penning traps
  137. Gravity measurement on antimatter and supergravity
  138. Experimental Verification of Stochastic Cooling in a Penning Trap
  139. Ramsey fringes in the nonlinear Hanle effect in a metastable atomic beam
  140. Stochastic Cooling of Charged Particles in a Penning Trap
  141. Subnatural coherence effects in saturation spectroscopy using a single traveling wave
  142. Optogalvanic nonlinear hanle effect by a single frequency laser: A quantitative analysis
  143. A hollow cathode for high-resolution optogalvanic spectroscopy: Application to uranium
  144. Nonlinear laser spectroscopy
  145. Intermodulated optogalvanic Zeeman spectroscopy in a hollow cathode discharge
  146. ?Laser snow? effect in CS2 vapour induced by krypton laser
  147. Buffer gas pressure shift in the mF = 0 → mF = 0 ground state hyperfine line in Cs
  148. r.f.-Optical double-resonance and level crossing spectroscopy with optogalvanic detection
  149. Tuning of Hydrogen Maser Cavity by Means of a Variable Capacitance Diode
  150. A hyperfine filter for the 3776 Å thallium resonance line
  151. Optical pumping of caesium in the presence of heavy noble gases
  152. Foreign-Gas-Induced Cesium Hyperfine Relaxation
  153. On the population inversion between the hyperfine sublevels of Cs
  154. Foreign-Gas-Induced Cesium Hyperfine Relaxation
  155. High efficiency hyperfine filter for the caesium resonance lines
  156. New Schottky diodes with very broad frequency band
  157. High-stability 72 GHz Gunn oscillator for the characterization of ultra-high-speed optical receivers based on InP and InSb Schottky diodes
  158. Measurements of near infrared frequency mixing by metal-semiconductor point-contact diodes