Press release
Integrated Quantum Optical Circuits Market by Material Type (Indium Phosphide, Silica Glass, Silicon Photonics, Lithium Niobate, and Gallium Arsenide) and Application (Optical Fiber Communication, Optical Sensors, Bio Medical, Quantum Computing, and Other
The global integrated quantum optical circuits market is expected to witness considerable growth due to the strengthening global economy, adoption of smart devices, and enhanced features such as low propagation loss, broad wavelength coverage, low-temperature dependence,and others.According to a recent report published by Allied Market Research, titled,"Integrated Quantum Optical Circuits Market by Material Type and Application: Global Opportunity Analysis and Industry Forecast, 2018 - 2025,"the global integrated quantum optical circuits market was valued at $426.0 million in 2017 and is projected to reach at $1,460.2 million by 2025, growing at a CAGR of 16.3%from 2018 to 2025. Integrated Quantum Optical Circuits is a device that integrates multiple optical devices to form a single photonic circuit. This device uses light instead of electricity for signal processing and computing.
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Integrated Quantum Optical Circuits is a device that integrates multiple optical devices to form a single photonic circuit. This device uses light instead of electricity for signal processing and computing. It consists of complex circuit configurations due to integration of various optical devices including multiplexers, amplifiers, modulators, and others into a small compact circuit. It enables efficient electrical to optical conversions and allows devices to work at high temperature. These devices are much more efficient, have higher bandwidth, higher processing speed, and lower energy loss in comparison to traditional integrated circuits. Conventional integrated circuits work by conducting electricity whereas the photonic circuit utilizes quantum of lights for the signal processing. The optical devices such as multiplexers, optical lasers, de-multiplexers, attenuators, optical amplifiers, and others are integrated on this circuit, and the wavelength range is usually 800 nm to 1700 nm, at which signal is transmitted within a circuit.
The range of fabrication devices, which are used in integration of circuits, varies as per the application of those devices. Hybrid photonic and monolithic integration are the two different types of photonic integration methods. Hybrid photonic circuits consist of package of photonic devices, which are used for the same function whereas a lot of optical devices of different functions are combined to form a single IC. The applications of Integrated Quantum Optical Circuits include fiber-optic communication, bio medical, computing, and optical sensors.
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The major players operating in the integrated quantum optical circuits market are Aifotec AG, Ciena Corporation, Finisar Corporation, Intel Corporation, Infinera Corporation, Neophotonics Corporation, TE Connectivity, Oclaro Inc., Luxtera, Inc., and Emcore Corporation. These key players have adopted strategies such as product portfolio expansion, mergers & acquisitions, agreements, geographical expansion, and collaborations to enhance their market penetration.
Key Benefits for Integrated Quantum Optical Circuits market:
• This study presents an analytical depiction of the global integrated quantum optical circuits industry along with the current trends and future estimations to depict the imminent investment pockets.
• The overall market potential is determined to understand the lucrative trends to gain a stronger foothold in the global integrated quantum optical circuits industry.
• The report includes information related to key drivers, restraints, and opportunities with a detailed impact analysis.
• The current market is quantitatively analyzed for the period of 20172025 to highlight the financial competency of the global integrated quantum optical circuits market.
• Porters five forces analysis illustrates the potency of the buyers and suppliers in the market.
IST OF TABLES
TABLE 01. GLOBAL INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017-2025($MILLION)
TABLE 02. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR INDIUM PHOSPHIDE, BY REGION 2017-2025 ($MILLION)
TABLE 03. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR SILICA GLASS, BY REGION 2017-2025 ($MILLION)
TABLE 04. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR SILICON PHOTONICS, BY REGION 2017–2025 ($MILLION)
TABLE 05. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR LITHIUM NIOBATE, BY REGION 2017–2025 ($MILLION)
TABLE 06. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR GALLIUM ARSENIDE, BY REGION 2017–2025 ($MILLION)
TABLE 07. GLOBAL INTEGRATED QUANTUM OPTICAL CIRCUITS, BY INDUTRY VERTICAL, 2017–2025 ($MILLION)
TABLE 08. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR OPTICAL FIBRE COMMUNICATION, BY REGION, 2017–2025 ($MILLION)
TABLE 09. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR OPTICAL SENSORS, BY REGION 2017-2025 ($MILLION)
TABLE 10. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR BIO MEDICAL, BY REGION, 2017–2025 ($MILLION)
TABLE 11. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR QUANTUM COMPUTING, BY REGION, 2017–2025 ($MILLION)
TABLE 12. INTEGRATED QUANTUM OPTICAL CIRCUITS REVENUE FOR OTHERS, BY REGION 2017–2025 ($MILLION)
TABLE 13. NORTH AMERICAN INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 14. NORTH AMERICAN INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 15. U. S. INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 16. U.S. INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 17. CANADA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 18. CANADA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 19. MEXICO INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 20. MEXICO INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 21. EUROPEAN INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 22. EUROPEAN INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 23. U.K. INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 24. U.K. INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 25. GERMANY INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 26. GERMANY INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 27. FRANCE INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 28. FRANCE INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 29. ITALY INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 30. ITALY INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 31. REST OF EUROPE INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 32. REST OF EUROPE INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 33. ASIA-PACIFIC INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 34. ASIA-PACIFIC INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 35. CHINA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 36. CHINA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 37. JAPAN INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 38. JAPAN INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 39. INDIA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 40. INDIA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 41. AUSTRALIA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 42. AUSTRALIA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 43. REST OF ASIA-PACIFIC INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 44. REST OF ASIA-PACIFIC INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 45. LAMEA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 46. LAMEA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 47. LATIN AMERICA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 48. LATIN AMERICA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 49. MIDDLE EAST INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 50. MIDDLE EAST INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 51. AFRICA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY MATERIAL TYPE, 2017–2025 ($MILLION)
TABLE 52. AFRICA INTEGRATED QUANTUM OPTICAL CIRCUITS, BY APPLICATION, 2017–2025 ($MILLION)
TABLE 53. AIFOTEC AG: COMPANY SNAPSHOT
TABLE 54. CIENA CORPORATION: COMPANY SNAPSHOT
TABLE 55. CIENA CORPORATION: OPERATING SEGMENTS
TABLE 56. CIENA CORPORATION: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 57. EMCORE CORPORATION: COMPANY SNAPSHOT
TABLE 58. EMCORE CORPORATION: PRODUCT PORTFOLIO
TABLE 59. EMCORE CORPORATION: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 60. FINISAR CORPORATION: COMPANY SNAPSHOT
TABLE 61. FINISAR CORPORATION: PRODUCT PORTFOLIO
TABLE 62. FINISAR CORPORATION: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 63. INTEL CORPORATION: COMPANY SNAPSHOT
TABLE 64. INTEL CORPORATION: OPERATING SEGMENTS
TABLE 65. INTEL CORPORATION: PRODUCT PORTFOLIO
TABLE 66. INTEL CORPORATION: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 67. INFINERA CORPORATION: COMPANY SNAPSHOT
TABLE 68. INFINERA CORPORATION: OPERATING SEGMENTS
TABLE 69. INFINERA CORPORATION: PRODUCT PORTFOLIO
TABLE 70. INFINERA CORPORATION: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 71. LUXTERA: COMPANY SNAPSHOT
TABLE 72. LUXTERA: PRODUCT PORTFOLIO
TABLE 73. LUXTERA: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 74. LUMENTUM OPERATIONS LLC: COMPANY SNAPSHOT
TABLE 75. LUMENTUM OPERATIONS LLC: OPERATING SEGMENTS
TABLE 76. LUMENTUM OPERATIONS LLC: PRODUCT PORTFOLIO
TABLE 77. LUMENTUM OPERATIONS LLC: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 78. NEOPHOTONICS CORPORATION: COMPANY SNAPSHOT
TABLE 79. NEOPHOTONICS CORPORATION: OPERATING SEGMENTS
TABLE 80. NEOPHOTONICS CORPORATION: PRODUCT PORTFOLIO
TABLE 81. NEOPHOTONICS CORPORATION: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 82. TE CONNECTIVITY: COMPANY SNAPSHOT
TABLE 83. TE CONNECTIVITY: OPERATING SEGMENTS
TABLE 84. TE CONNECTIVITY: PRODUCT PORTFOLIO
TABLE 85. TE CONNECTIVITY: KEY STRATEGIC MOVES AND DEVELOPMENTS
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