Journal Club

原則毎週火曜と金曜の17:00から地下207号室で開催。

Coming up next

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2012年8月28日松本伸之Pulsed quantum optomechanicsProc. Natl Acad. Sci. USA 108, 16182-16187 (2011)

Log

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2012年8月15日松本伸之A Technique for In-situ Measurement of Free Spectral Range and Transverse Mode Spacing of Optical CavitiesarXiv:1206.5037v2
2012年8月15日道村唯太Thermo-optic noise in coated mirrors for high-precision optical measurementsPhys. Rev. D 78, 102003 (2008)
2012年7月10日中野雅之Probing Planck-scale physics with quantum opticsNature Physics 8, 393–397 (2012)
2012年6月26日正田亜八香Precision Rotation Measurements with an Atom Interferometer GyroscopePhys. Rev. Lett. 78, 2046–2049 (1997)
2012年6月19日松本伸之Eigenmode changes in a misaligned triangular optical cavity2011 J. Opt. 13 055504
2012年6月12日松本伸之An investigation of coupledresonances in materials suitable for test masses in gravitational wave detectorsPhysics Letters A Volume 161, Issue 2, 23 December 1991, Pages 101–110
2012年6月5日松本伸之Thermoelastic effects at low temperatures and quantum limits in displacement measurementsPhys. Rev. D 63, 082003 (2001)
2012年5月29日中野雅之Test of the Gravitational Inverse Square Law at Millimeter RangesPhys. Rev. Lett. 108, 081101 (2012)
2012年5月11日道村唯太Experimental demonstration of a displacement noise free interferometry scheme for gravitational wave detectors showing displacement noise reduction at low frequenciesPhys. Rev. D 81, 062004 (2010)
2012年5月8日正田亜八香Development of a Displacement- and Frequency-Noise-Free Interferometer in a 3D Configuration for Gravitational Wave DetectionPhys. Rev. Lett. 103, 171101 (2009)
2012年5月1日松本伸之Optomechanically Induced TransparencyScience 330, 1520 (2010)
2012年4月27日道村唯太Active noise cancellation in a suspended interferometerRev. Sci. Instrum. 83, 024501 (2012)
2012年4月16日正田亜八香Virgo data characterization and impact on gravitational wave searches (Section 4のみ)arXiv:1203.5613v1
2012年4月9日松本伸之Nanomechanical motion measured with an imprecision below that at the standard quantum limitNature Nanotechnology 4, 820 - 823 (2009)
2012年4月6日道村唯太Locking the frequency of lasers to an optical cavity at the $1.6 \times 10^{-17}$ relative instability levelarXiv:1203.6247v1

Interesting Papers

次回以降の論文候補

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Weak value amplification in a shot-noise limited interferometerarXiv:1201.6039v1
Intensity feedback effects on quantum-limited noiseJ. Opt. Soc. Am. B 12, 1792-1800 (1995)
Opportunity to test non-Newtonian gravity using interferometric sensors with dynamic gravity field generatorsPhys. Rev. D 84, 082002 (2011)
The potential for very high-frequency gravitational wave detection2012 Class. Quantum Grav. 29 095003
Damping and local control of mirror suspensions for laser interferometric gravitational wave detectorsRev. Sci. Instrum. 83, 044501 (2012)
Resonant Speed Meter for Gravitational-Wave DetectionPhys. Rev. Lett. 101, 081101 (2008)
THE SEISMIC NOISE OF THE EARTH'S SURFACEClass. Quantum. Grav. 15, 3339 (1998)
Terrestrial gravitational noise on a gravitational wave antennaPhys. Rev. D. 30, 732 (1984)
A cryogenic torsion pendulum: progress reportClass. Quantum Grav. 17 2313 (2000)
Treatment of Calibration Uncertainty in Multi-Baseline Cross-Correlation Searches for Gravitational WavesarXiv:1205.3112
Force-insensitive optical cavityOptics Letters, Vol. 36, Issue 18, pp. 3572-3574 (2011)
Pound–Drever–Hall error signals for the length control of three-port grating coupled cavitiesApplied Optics, Vol. 50, Issue 22, pp. 4340-4346 (2011)
Many-Wavelength Interferometry with Thousands of Lasers for Absolute Distance MeasurementPhys. Rev. Lett. 108, 183901 (2012)
Biological measurement beyond the quantum limitarXiv:1206.6928v1
Serial time-encoded amplified imaging for real-time observation of fast dynamic phenomenaNature 458, 1145-1149 (30 April 2009)
Dual-wavelength optical parametric oscillator using antiresonant ring interferometerLaser Photonics Rev., 1–5 (2012)
Tunable High-Frequency Gravitational-Wave Detection with optically-levitated sensorsarXiv:1207.5320v1
A New Bound on Excess Frequency Noise in Second Harmonic Generation in PPKTP at the 10^-19 LevelarXiv:1208.2011
Large-angle scattered light measurements for quantum-noise filter cavity design studiesJOSA A, Vol. 29, Issue 8, pp. 1722-1727 (2012)
Enhanced Quantum Nonlinearities in a Two-Mode Optomechanical SystemPhys. Rev. Lett. 109, 063601 (2012)
Measurement of the Velocity of Neutrinos from the CNGS Beam with the Large Volume DetectorPhys. Rev. Lett. 109, 070801 (2012)
Non-classical light generated by quantum-noise-driven cavity optomechanicsNature (2012)
Polarization speed meter for gravitational-wave detectionPhys. Rev. D 86, 062001 (2012)

量子光学

テキスト

Marlan O. Scully, M. Suhail Zubairy: Quantum Optics (Cambridge University Press, 1997)

レジュメ

  1. Quantum theory of radiation file20100423
  2. Coherent and squeezed states of the radiation field file20100430
  3. Quantum Distribution Theory and Partially Coherent Radiation file20100507 fileappendix
  4. Field-field and photon-photon correlation interferometry
  5. Atom-field interaction - semiclassical theory
  6. Atom-field interaction - quantum theory
  7. Lasing without inversion and other effects of atomic coherence and interference file20100709 file20100723
  8. Quantum theory of damping - density operator and wave function approach
  9. Quantum theory of damping - Heisenberg-Langevin approach
  10. Resonance fluorescence
  11. Quantum theory of laser - density operator approach
  12. Quantum theory of laser - Heisenberg-Langevin approach
  13. Theory of the micrometer
  14. Correlated emission laser: concept, theory and analysis
  15. Phase sensitivity in quantum optical systems: applications
  16. Squeezing via non-linear optical processes
  17. Atom optics
  18. The EPR paradox, hidden variables and Bell's Theorem
  19. Quantum non-demolition measurements
  20. Quantum optical tests of complementarity
  21. Two-photon interferometry and the quantum measurement problem

Saulsonゼミ

テキスト

安東正樹: 東京大学 修士論文 (1996)

Peter R. Saulson: Fundamentals of Interferometric Gravitational Wave Detectors (World Scientific Pub Co Inc, 1994)

レジュメ

  1. The Search for Gravitational Waves
  2. The Nature of Gravitational Waves
  3. Sources of Gravitational Waves file20091218
  4. Linear Systems, Signals and Noise file20100113 supplement
  5. Optical Readout Noise file20100120
  6. Folded Interferometer Arms
  7. Thermal Noise file20100127 file20100203
  8. Seismic Noise and Vibration Isolation file20100210
  9. Design Features of Large Interferometers
  10. Null Instruments file20100302
  11. Feedback Control Systems file20100420 file20100427
  12. An Interferometer as an Active Null Instrument file20091216 file20100511 fileappendix(麻生さんの資料)
  13. Resonant Mass Gravitational Wave Detectors file20100525
  14. Detecting Gravitational Wave Signals file20100601
  15. Gravitational Wave Astronomy file20100608
  16. Prospects

参考

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