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1. Gliese 12 b: A Temperate Earth-sized Planet at 12 pc Ideal for Atmospheric Transmission Spectroscopy

2. Super-Earth Formation with Slow Migration from a Ring in an Evolving Peaked Disk Compatible with Terrestrial Planet Formation

3. Direct Imaging Explorations for Companions around Mid–Late M Stars from the Subaru/IRD Strategic Program

4. Evolution of a Water-rich Atmosphere Formed by a Giant Impact on an Earth-sized Planet

5. Early Water Delivery to Terrestrial Planet Regions during the Stages of Jupiter’s Formation and Migration in the Grand Tack Model

6. A Super-Earth Orbiting Near the Inner Edge of the Habitable Zone Around the M4.5 Dwarf Ross 508

7. Formation of a single large moon around a gas giant: Saturn-Titan system

8. 3-D selection of 167 sub-stellar companions to nearby stars

10. Water delivery to a delicate system

11. Early Initiation of Inner Solar System Formation at Dead-Zone Inner Edge

12. Elemental abundances of nearby M dwarfs based on high-resolution near-infrared spectra obtained by the Subaru/IRD survey: Proof of concept

13. Unified simulations of planetary formation and atmospheric evolution II: Rapid disk clearing by photoevaporation yields low-mass super-Earth atmospheres

14. Rapid-then-slow migration reproduces mass distribution of TRAPPIST-1 system

15. Promoted mass growth of multiple, distant giant planets through pebble accretion and planet–planet collision

17. Do the TRAPPIST-1 Planets Have Hydrogen-rich Atmospheres?

18. Vertebral Body Perforation (Percutaneous Transpedicular Vertebral Body Perforation)

19. Breaking Resonant Chains: Destabilization of Resonant Planets Due to Long-term Mass Evolution

20. Unified Simulations of Planetary Formation and Atmospheric Evolution: Effects of Pebble Accretion, Giant Impacts, and Stellar Irradiation on Super-Earth Formation

21. Formation of single-moon systems around gas giants

22. A limit on gas accretion onto close-in super-Earth cores from disk accretion

23. The infrared Doppler (IRD) instrument for the Subaru telescope: instrument description and commissioning results

24. Formation of the terrestrial planets in the solar system around 1 au via radial concentration of planetesimals

25. Effects of global gas flows on type I migration

26. Breaking the Chains: Hot Super-Earth systems from migration and disruption of compact resonant chains

27. The influence of imperfect accretion and radial mixing on ice:rock ratios in the Galilean satellites

28. Formation of close-in super-Earths in evolving protoplanetary disks due to disk winds

29. Evolution of Protoplanetary Discs with Magnetically Driven Disc Winds

30. Formation of terrestrial planets from planetesimals around M dwarfs

32. Formation of terrestrial planets in disks evolving via disk winds and implications for the origin of the solar system's terrestrial planets

33. Suppression of type I migration by disk winds

34. Infrared Doppler instrument (IRD) for the Subaru telescope to search for Earth-like planets around nearby M-dwarfs

35. 70 MW class superconducting generator test

36. Electromagnetic Characteristics of 70MW-Class Superconduting Generator

37. N-body Simulations of Terrestrial Planet Formation under the Influence of a Hot Jupiter

38. Crowding Out of Giants by Dwarfs: An Origin for the Lack of Companion Planets in Hot Jupiter Systems

39. Infrared Doppler instrument for the Subaru Telescope (IRD)

40. Eccentricity Trap: Trapping of Resonantly Interacting Planets near the Disk Inner Edge

41. Linear Motor Car Model Using a High-Tc Superconductor

42. N-body simulations of planetary accretion around M dwarf stars

43. Formation of Short-period Terrestrial Planets

44. N-body Simulations of Planetary Accretion around M Dwarf Stars

45. A reassessment of the in situ formation of close-in super-Earths

46. Field winding model test of 70 MW class superconducting generator

47. Formation of terrestrial planets in disks evolving via disk winds and implications for the origin of the solar system's terrestrial planets.

48. Unified Simulations of Planetary Formation and Atmospheric Evolution: Effects of Pebble Accretion, Giant Impacts, and Stellar Irradiation on Super-Earth Formation.

49. Do the TRAPPIST-1 Planets Have Hydrogen-rich Atmospheres?

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